Plate Thickness Optimization#

This example shows how to use PyDyna to import a mesh, set up a plate thickness optimization analysis, run the analysis iteratively until a target displacement is reached,and then display the results of that optimization.

Perform required imports#

Import required packages, including those for the keywords, deck, and solver.

import os
import pathlib
import shutil
import tempfile

import ansys.dpf.core as dpf
from ansys.dpf.core import operators as ops
import matplotlib.pyplot as plt
import pandas as pd

from ansys.dyna.core import Deck, keywords as kwd

# from ansys.dyna.core.run.linux_runner import LinuxRunner
from ansys.dyna.core.run.local_solver import run_dyna
from ansys.dyna.core.run.options import MemoryUnit, MpiOption, Precision
from ansys.dyna.core.utils.download_utilities import EXAMPLES_PATH, DownloadManager

# from ansys.dyna.core.run.windows_runner import WindowsRunner



workdir = tempfile.TemporaryDirectory()

mesh_file_name = "bar_impact_mesh.k"

mesh_file = DownloadManager().download_file(
    mesh_file_name, "ls-dyna", "Bar_Impact", destination=os.path.join(EXAMPLES_PATH, "Bar_Impact")
)

# If you'd like to insert your own path to a local mesh file you can do so by replacing the line
# above with:
# mesh_file = "C:\Path\to\file\\bar_impact_mesh.k"

Set analysis parameters#

Define the number of iterations, thickness increment, target displacement, and initial velocity for the analysis

Create a deck and keywords#

Create a deck, which is the container for all the keywords. Then, create and append individual keywords to the deck.

def create_input_deck(thickness):
    deck = Deck()
    deck.title = "Bar Thickness - %.4s" % thickness

    # Define bar material
    mat_1 = kwd.Mat003(mid=1)
    mat_1.ro = 7.85000e-9
    mat_1.e = 150000.0
    mat_1.pr = 0.34
    mat_1.sigy = 390.0
    mat_1.etan = 90.0

    # Define bar section
    sec_1 = kwd.SectionSolid(secid=1)
    sec_1.elform = 1

    # Define plate material
    mat_2 = kwd.Mat003(mid=2)
    mat_2.ro = 7.85000e-9
    mat_2.e = 1500000.0
    mat_2.pr = 0.34
    mat_2.sigy = 3900.0
    mat_2.etan = 900.0

    # Define plate section
    sec_2 = kwd.SectionShell(secid=2)
    sec_2.elform = 2
    sec_2.t1 = thickness
    sec_2.t2 = thickness
    sec_2.t3 = thickness
    sec_2.t4 = thickness

    # Define bar part
    part_1 = kwd.Part()
    part_1.parts = pd.DataFrame({"pid": [1], "mid": [mat_1.mid], "secid": [sec_1.secid]})

    # Define plate part
    part_2 = kwd.Part()
    part_2.parts = pd.DataFrame({"pid": [2], "mid": [mat_2.mid], "secid": [sec_2.secid]})

    # Define coordinate system
    cs_1 = kwd.DefineCoordinateSystem(cid=1)
    cs_1.xl = 1.0
    cs_1.yp = 1.0

    # Define initial velocity
    init_vel = kwd.InitialVelocityGeneration()
    init_vel.id = part_1.parts["pid"][0]
    init_vel.styp = 2
    init_vel.vy = initial_velocity
    init_vel.icid = cs_1.cid

    # Define box for node set
    box_1 = kwd.DefineBox(boxid=1, xmn=-500, xmx=500, ymn=39.0, ymx=40.1, zmn=-500, zmx=500)

    # Create node set
    set_node_1 = kwd.SetNodeGeneral()
    set_node_1.sid = 1
    set_node_1.option = "BOX"
    set_node_1.e1 = box_1.boxid

    # Define boxes for boundary conditions
    box_plate_zN = kwd.DefineBox(boxid=2, xmn=-0.1, xmx=10.1, ymn=41.0, ymx=43.0, zmn=-10.1, zmx=-9.9)
    box_plate_zP = kwd.DefineBox(boxid=3, xmn=0.1, xmx=9.9, ymn=41.0, ymx=43.0, zmn=-0.1, zmx=0.1)
    box_plate_xP = kwd.DefineBox(boxid=4, xmn=9.9, xmx=10.1, ymn=41.0, ymx=43.0, zmn=-10.1, zmx=0.1)
    box_plate_xN = kwd.DefineBox(boxid=5, xmn=-0.1, xmx=0.1, ymn=41.0, ymx=43.0, zmn=-9.9, zmx=-0.1)

    # Create node set for fixed BC
    set_node_Fixed = kwd.SetNodeGeneral()
    set_node_Fixed.sid = 2
    set_node_Fixed.option = "BOX"
    set_node_Fixed.e1 = box_plate_zN.boxid
    set_node_Fixed.e2 = box_plate_xP.boxid

    # Define fixed Boundary Conditions
    fixed_bc = kwd.BoundarySpcSet(dofx=1, dofy=1, dofz=1, dofrx=1, dofry=1, dofrz=1)
    fixed_bc.nsid = set_node_Fixed.sid

    # Create node set for symmetric BC normal to Z Axis
    set_node_zNormal = kwd.SetNodeGeneral()
    set_node_zNormal.sid = 3
    set_node_zNormal.option = "BOX"
    set_node_zNormal.e1 = box_plate_zP.boxid

    # Define zNormal Boundary Conditions
    zNormal_bc = kwd.BoundarySpcSet(dofx=0, dofy=0, dofz=1, dofrx=1, dofry=1, dofrz=0)
    zNormal_bc.nsid = set_node_zNormal.sid

    # Create node set for symmetric BC normal to X Axis
    set_node_xNormal = kwd.SetNodeGeneral()
    set_node_xNormal.sid = 4
    set_node_xNormal.option = "BOX"
    set_node_xNormal.e1 = box_plate_xN.boxid

    # Define xNormal Boundary Conditions
    xNormal_bc = kwd.BoundarySpcSet(dofx=1, dofy=0, dofz=0, dofrx=0, dofry=1, dofrz=1)
    xNormal_bc.nsid = set_node_xNormal.sid

    # Define box for node set of plate
    box_plate = kwd.DefineBox(boxid=6, xmn=-1, xmx=11, ymn=39.0, ymx=40.1, zmn=-11, zmx=1)

    # Create node set for plate
    set_node_plate = kwd.SetNodeGeneral()
    set_node_plate.sid = 5
    set_node_plate.option = "BOX"
    set_node_plate.e1 = box_plate.boxid

    # Define contact
    contact = kwd.ContactAutomaticSingleSurface(surfa=0)
    contact.fs = 0.3

    # Define control termination
    control_term = kwd.ControlTermination(endtim=2.00000e-4, dtmin=0.001)

    # Define database cards
    deck_dt_out = 8.00000e-8
    deck_glstat = kwd.DatabaseGlstat(dt=deck_dt_out, binary=3)
    deck_matsum = kwd.DatabaseMatsum(dt=deck_dt_out, binary=3)
    deck_nodout = kwd.DatabaseNodout(dt=deck_dt_out, binary=3)
    deck_elout = kwd.DatabaseElout(dt=deck_dt_out, binary=3)
    deck_rwforc = kwd.DatabaseRwforc(dt=deck_dt_out, binary=3)
    deck_d3plot = kwd.DatabaseBinaryD3Plot(dt=4.00000e-6)

    # Define deck history node
    deck_hist_node_1 = kwd.DatabaseHistoryNodeSet()
    deck_hist_node_1.id1 = set_node_1.sid

    # Append all cards to input deck
    deck.extend(
        [
            deck_glstat,
            deck_matsum,
            deck_nodout,
            deck_elout,
            deck_rwforc,
            deck_d3plot,
            set_node_1,
            control_term,
            contact,
            box_1,
            box_plate_zN,
            box_plate_zP,
            box_plate_xP,
            box_plate_xN,
            box_plate,
            set_node_Fixed,
            set_node_zNormal,
            set_node_xNormal,
            set_node_plate,
            fixed_bc,
            zNormal_bc,
            xNormal_bc,
            init_vel,
            cs_1,
            part_1,
            mat_1,
            sec_1,
            part_2,
            mat_2,
            sec_2,
            deck_hist_node_1,
        ]
    )

    return deck


def write_input_deck(**kwargs):
    thickness = kwargs.get("thickness")
    wd = kwargs.get("wd")
    if not all((thickness, wd)):
        raise Exception("Missing input!")
    deck = create_input_deck(thickness)
    # Import mesh
    deck.append(kwd.Include(filename=mesh_file_name))

    # Write LS-DYNA input deck
    os.makedirs(wd, exist_ok=True)
    deck.export_file(os.path.join(wd, "input.k"))
    shutil.copyfile(mesh_file, os.path.join(wd, mesh_file_name))

Define the Dyna solver function#

def run_job(directory):
    run_dyna(
        "input.k",
        working_directory=directory,
        ncpu=2,
        memory=2,
        precision=Precision.SINGLE,
        mpi_option=MpiOption.MPP_INTEL_MPI,
        memory_unit=MemoryUnit.MB,
    )
    assert os.path.isfile(os.path.join(directory, "d3plot")), "No result file found"

Define the DPF output function#

def get_plate_displacement(directory):
    ds = dpf.DataSources()
    result_file = os.path.join(directory, "d3plot")
    assert os.path.isfile(result_file)
    ds.set_result_file_path(result_file, "d3plot")
    model = dpf.Model(ds)

    # Create mesh operator
    mes_op = dpf.operators.mesh.mesh_provider()
    mes_op.inputs.data_sources.connect(ds)
    # Isolate Part 2
    mes_op.connect(25, [2])
    # Extract mesh
    part_mesh = mes_op.outputs.mesh()

    # Create scoping operator from mesh using from_mesh scoping operator
    part_mesh_op = dpf.operators.scoping.from_mesh()
    part_mesh_op.inputs.mesh.connect(part_mesh)
    part_scoping = part_mesh_op.outputs.scoping()

    # create displacement entity, apply part scoping
    disp = model.results.displacement
    disp.on_mesh_scoping(part_scoping)

    disp_op = disp.on_all_time_freqs()

    # Find min and max displacement
    min_max_op = ops.min_max.min_max_fc(ops.math.norm_fc(disp_op))

    min_displ = min_max_op.outputs.field_min()
    max_displ = min_max_op.outputs.field_max()

    max_disp_data = max_displ.data
    min_disp_data = min_displ.data

    tdata = model.metadata.time_freq_support.time_frequencies.data

    return tdata, max_disp_data, min_disp_data

Run solver iteratively until target displacement is reached#

all_results = []

for iteration in range(max_iterations):
    # Define thickness for this iteration
    thickness = initial_thickness + thickness_increment * iteration
    wd = os.path.join(workdir.name, f"thickness_{thickness:.4f}")
    pathlib.Path(wd).mkdir(exist_ok=True)
    # Create LS-Dyna input deck with new thickness
    write_input_deck(thickness=thickness, wd=wd)
    try:
        # Run solver
        run_job(wd)
        # Post-process displacement
        time_data, max_disp_data, min_disp_data = get_plate_displacement(wd)
        reduced_time_data = [t * 1000 for t in time_data]  # Convert to ms
        # Store result
        all_results.append({"thickness": thickness, "time": reduced_time_data, "max_disp": max_disp_data})
        # Check if target displacement is reached
        if max(max_disp_data) <= target_displacement:
            print(f"Target displacement reached at thickness {thickness:.4f}")
            break

    except Exception as e:
        print(f"Iteration {iteration} failed:", e)
 License option : check ansys licenses only


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      Date: 02/13/2026      Time: 03:53:20
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 1b1775ba9e7f                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 1b1775ba9e7f-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61986

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


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 Beginning of keyword reader                                   02/13/26 03:53:31

                                                               02/13/26 03:53:31
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:53:31

 Performing Decomposition -- Phase 1                           02/13/26 03:53:31

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:53:31
 Performing Decomposition -- Phase 3                           02/13/26 03:53:31

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     2.356E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:53:31
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
 cpu time per zone cycle............       207 nanoseconds
 average cpu time per zone cycle....       758 nanoseconds
 average clock time per zone cycle..       853 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:31
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:31
    2091 t 7.9966E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:31
    2196 t 8.3974E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:31
    2301 t 8.7981E-05 dt 3.81E-08 write d3plot file            02/13/26 03:53:31
    2406 t 9.1980E-05 dt 3.80E-08 write d3plot file            02/13/26 03:53:31
    2512 t 9.5994E-05 dt 3.77E-08 write d3plot file            02/13/26 03:53:31
    2618 t 9.9972E-05 dt 3.73E-08 write d3plot file            02/13/26 03:53:31
    2726 t 1.0398E-04 dt 3.70E-08 write d3plot file            02/13/26 03:53:31
    2834 t 1.0797E-04 dt 3.68E-08 write d3plot file            02/13/26 03:53:31
    2944 t 1.1200E-04 dt 3.64E-08 write d3plot file            02/13/26 03:53:31
    3054 t 1.1597E-04 dt 3.59E-08 write d3plot file            02/13/26 03:53:31
    3166 t 1.1997E-04 dt 3.55E-08 write d3plot file            02/13/26 03:53:31
    3280 t 1.2399E-04 dt 3.51E-08 write d3plot file            02/13/26 03:53:32
    3394 t 1.2798E-04 dt 3.48E-08 write d3plot file            02/13/26 03:53:32
    3510 t 1.3200E-04 dt 3.44E-08 write d3plot file            02/13/26 03:53:32
    3626 t 1.3597E-04 dt 3.40E-08 write d3plot file            02/13/26 03:53:32
    3745 t 1.4000E-04 dt 3.37E-08 write d3plot file            02/13/26 03:53:32
    3864 t 1.4399E-04 dt 3.34E-08 write d3plot file            02/13/26 03:53:32
    3984 t 1.4799E-04 dt 3.31E-08 write d3plot file            02/13/26 03:53:32
    4105 t 1.5198E-04 dt 3.29E-08 write d3plot file            02/13/26 03:53:32
    4227 t 1.5597E-04 dt 3.26E-08 write d3plot file            02/13/26 03:53:32
    4350 t 1.5997E-04 dt 3.24E-08 write d3plot file            02/13/26 03:53:32
    4474 t 1.6399E-04 dt 3.23E-08 write d3plot file            02/13/26 03:53:32
    4598 t 1.6798E-04 dt 3.21E-08 write d3plot file            02/13/26 03:53:32
    4723 t 1.7199E-04 dt 3.21E-08 write d3plot file            02/13/26 03:53:32
    4848 t 1.7599E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    4973 t 1.7999E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    5000 t 1.8085E-04 dt 3.20E-08 flush i/o buffers            02/13/26 03:53:32
    5098 t 1.8399E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    5223 t 1.8798E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    5348 t 1.9198E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    5473 t 1.9598E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32
    5598 t 1.9998E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32

 *** termination time reached ***
    5598 t 2.0002E-04 dt 3.20E-08 write d3dump01 file          02/13/26 03:53:32
    5598 t 2.0002E-04 dt 3.20E-08 flush i/o buffers            02/13/26 03:53:32
    5598 t 2.0002E-04 dt 3.20E-08 write d3plot file            02/13/26 03:53:32

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:53:32

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1286K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1293K on processor     1
          Average   1283K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4424E-02    0.21     1.4459E-02    0.12
    KW Reading ......... 3.2340E-03    0.05     3.2345E-03    0.03
    KW Writing ......... 8.9268E-04    0.01     8.9250E-04    0.01
  MPP Decomposition .... 2.0282E-02    0.30     2.0992E-02    0.18
    Init Proc .......... 1.0820E-02    0.16     1.1325E-02    0.10
    Decomposition ...... 2.4052E-03    0.04     2.4070E-03    0.02
    Translation ........ 7.0214E-03    0.10     7.2240E-03    0.06
  Initialization ....... 5.1618E+00   76.05     1.0243E+01   86.28
    Init Proc Phase 1 .. 7.2380E-03    0.11     7.7340E-03    0.07
    Init Proc Phase 2 .. 1.9747E-03    0.03     2.5595E-03    0.02
  Init solver .......... 2.9991E-04    0.00     3.0050E-04    0.00
  Element processing ... 4.9398E-01    7.28     4.9378E-01    4.16
    Solids ............. 3.3887E-01    4.99     3.3769E-01    2.84
    Shells ............. 9.5356E-02    1.40     9.5352E-02    0.80
    E Other ............ 1.6565E-02    0.24     1.6649E-02    0.14
  Binary databases ..... 7.1296E-02    1.05     7.1539E-02    0.60
  ASCII database ....... 4.4994E-01    6.63     4.4913E-01    3.78
  Contact algorithm .... 2.2055E-01    3.25     2.2052E-01    1.86
    Interf. ID         1 1.5807E-01    2.33     1.5772E-01    1.33
  Rigid Bodies ......... 9.1404E-03    0.13     9.0495E-03    0.08
  Time step size ....... 3.5668E-02    0.53     3.5452E-02    0.30
  Group force file ..... 5.0005E-03    0.07     5.4425E-03    0.05
  Others ............... 5.4486E-02    0.80     5.4589E-02    0.46
    Force Sharing ...... 3.1516E-02    0.46     3.1296E-02    0.26
  Misc. 1 .............. 1.4379E-01    2.12     1.4678E-01    1.24
    Scale Masses ....... 4.1552E-03    0.06     4.1950E-03    0.04
    Force Constraints .. 4.2578E-03    0.06     4.2490E-03    0.04
    Force to Accel ..... 1.2328E-02    0.18     1.2288E-02    0.10
    Constraint Sharing . 4.5390E-03    0.07     4.6420E-03    0.04
    Update RB nodes .... 4.6307E-03    0.07     4.6750E-03    0.04
  Misc. 2 .............. 3.0138E-02    0.44     2.9656E-02    0.25
  Misc. 3 .............. 5.0583E-02    0.75     5.1073E-02    0.43
  Misc. 4 .............. 2.6092E-02    0.38     2.6411E-02    0.22
    Timestep Init ...... 8.0828E-03    0.12     8.0240E-03    0.07
    Apply Loads ........ 9.0428E-03    0.13     9.0435E-03    0.08
  ----------------------------------------------------------------
  T o t a l s            6.7875E+00  100.00     1.1873E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5598
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1163.822 nanoseconds
 Clock time per zone cycle=        278.022 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   1b1775ba9e7f                              0.25404   1.7300E+00
  #       1   1b1775ba9e7f                              1.74596   1.1890E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3620E+01


 Start time   02/13/2026 03:53:31
 End time     02/13/2026 03:53:32
 Elapsed time       1 second  for    5598 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:53:32
Iteration 0 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
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 *                                                             *
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 * re-export.                                                  *
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 ***************************************************************

      Date: 02/13/2026      Time: 03:53:35
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : fd525ba06dce                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: fd525ba06dce-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61966

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:53:45

                                                               02/13/26 03:53:45
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:53:45

 Performing Decomposition -- Phase 1                           02/13/26 03:53:45

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:53:45
 Performing Decomposition -- Phase 3                           02/13/26 03:53:45

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     2.886E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:53:45
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
 cpu time per zone cycle............       177 nanoseconds
 average cpu time per zone cycle....       791 nanoseconds
 average clock time per zone cycle..       881 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:45
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:53:46
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:46
    2091 t 7.9965E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:46
    2196 t 8.3973E-05 dt 3.82E-08 write d3plot file            02/13/26 03:53:46
    2301 t 8.7979E-05 dt 3.81E-08 write d3plot file            02/13/26 03:53:46
    2406 t 9.1976E-05 dt 3.79E-08 write d3plot file            02/13/26 03:53:46
    2512 t 9.5984E-05 dt 3.77E-08 write d3plot file            02/13/26 03:53:46
    2619 t 9.9999E-05 dt 3.74E-08 write d3plot file            02/13/26 03:53:46
    2726 t 1.0399E-04 dt 3.72E-08 write d3plot file            02/13/26 03:53:46
    2834 t 1.0799E-04 dt 3.68E-08 write d3plot file            02/13/26 03:53:46
    2943 t 1.1198E-04 dt 3.64E-08 write d3plot file            02/13/26 03:53:46
    3054 t 1.1600E-04 dt 3.60E-08 write d3plot file            02/13/26 03:53:46
    3165 t 1.1998E-04 dt 3.57E-08 write d3plot file            02/13/26 03:53:46
    3277 t 1.2397E-04 dt 3.55E-08 write d3plot file            02/13/26 03:53:46
    3391 t 1.2800E-04 dt 3.52E-08 write d3plot file            02/13/26 03:53:46
    3505 t 1.3199E-04 dt 3.48E-08 write d3plot file            02/13/26 03:53:46
    3620 t 1.3598E-04 dt 3.46E-08 write d3plot file            02/13/26 03:53:46
    3736 t 1.3998E-04 dt 3.44E-08 write d3plot file            02/13/26 03:53:46
    3853 t 1.4399E-04 dt 3.42E-08 write d3plot file            02/13/26 03:53:46
    3970 t 1.4799E-04 dt 3.41E-08 write d3plot file            02/13/26 03:53:46
    4087 t 1.5197E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:46
    4205 t 1.5597E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:46
    4324 t 1.6000E-04 dt 3.38E-08 write d3plot file            02/13/26 03:53:46
    4442 t 1.6399E-04 dt 3.38E-08 write d3plot file            02/13/26 03:53:46
    4560 t 1.6798E-04 dt 3.38E-08 write d3plot file            02/13/26 03:53:46
    4678 t 1.7198E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    4796 t 1.7597E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    4914 t 1.7997E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    5000 t 1.8289E-04 dt 3.39E-08 flush i/o buffers            02/13/26 03:53:47
    5032 t 1.8397E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    5150 t 1.8798E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    5268 t 1.9198E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    5386 t 1.9598E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47
    5504 t 1.9999E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47

 *** termination time reached ***
    5504 t 2.0002E-04 dt 3.39E-08 write d3dump01 file          02/13/26 03:53:47
    5504 t 2.0002E-04 dt 3.39E-08 flush i/o buffers            02/13/26 03:53:47
    5504 t 2.0002E-04 dt 3.39E-08 write d3plot file            02/13/26 03:53:47

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:53:47

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1288K on processor     1
          Average   1276K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1296K on processor     1
          Average   1284K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4686E-02    0.22     1.4714E-02    0.12
    KW Reading ......... 3.2753E-03    0.05     3.2755E-03    0.03
    KW Writing ......... 8.8615E-04    0.01     8.8650E-04    0.01
  MPP Decomposition .... 2.0302E-02    0.30     2.1018E-02    0.18
    Init Proc .......... 1.0922E-02    0.16     1.1382E-02    0.10
    Decomposition ...... 1.9133E-03    0.03     1.9165E-03    0.02
    Translation ........ 7.4216E-03    0.11     7.6720E-03    0.06
  Initialization ....... 5.2167E+00   76.46     1.0354E+01   86.55
    Init Proc Phase 1 .. 7.5405E-03    0.11     8.0705E-03    0.07
    Init Proc Phase 2 .. 2.1228E-03    0.03     2.7170E-03    0.02
  Init solver .......... 2.8762E-04    0.00     2.8750E-04    0.00
  Element processing ... 4.7770E-01    7.00     4.7754E-01    3.99
    Solids ............. 3.2803E-01    4.81     3.2698E-01    2.73
    Shells ............. 9.0632E-02    1.33     9.0740E-02    0.76
    E Other ............ 1.6345E-02    0.24     1.6427E-02    0.14
  Binary databases ..... 7.4523E-02    1.09     7.4787E-02    0.63
  ASCII database ....... 4.4684E-01    6.55     4.4600E-01    3.73
  Contact algorithm .... 2.2176E-01    3.25     2.2173E-01    1.85
    Interf. ID         1 1.6067E-01    2.35     1.6032E-01    1.34
  Rigid Bodies ......... 9.3436E-03    0.14     9.2590E-03    0.08
  Time step size ....... 3.5608E-02    0.52     3.5379E-02    0.30
  Group force file ..... 4.9445E-03    0.07     5.2385E-03    0.04
  Others ............... 5.4363E-02    0.80     5.4455E-02    0.46
    Force Sharing ...... 3.1620E-02    0.46     3.1436E-02    0.26
  Misc. 1 .............. 1.4274E-01    2.09     1.4559E-01    1.22
    Scale Masses ....... 4.0840E-03    0.06     4.1850E-03    0.03
    Force Constraints .. 4.2364E-03    0.06     4.1540E-03    0.03
    Force to Accel ..... 1.1899E-02    0.17     1.1882E-02    0.10
    Constraint Sharing . 4.4999E-03    0.07     4.5890E-03    0.04
    Update RB nodes .... 4.6309E-03    0.07     4.6590E-03    0.04
  Misc. 2 .............. 2.8106E-02    0.41     2.7793E-02    0.23
  Misc. 3 .............. 4.9360E-02    0.72     4.9878E-02    0.42
  Misc. 4 .............. 2.5482E-02    0.37     2.5801E-02    0.22
    Timestep Init ...... 7.8282E-03    0.11     7.7660E-03    0.06
    Apply Loads ........ 8.8551E-03    0.13     8.8275E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.8227E+00  100.00     1.1963E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5504
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1189.933 nanoseconds
 Clock time per zone cycle=        279.224 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   fd525ba06dce                              0.24982   1.7100E+00
  #       1   fd525ba06dce                              1.75018   1.1980E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3690E+01


 Start time   02/13/2026 03:53:45
 End time     02/13/2026 03:53:47
 Elapsed time       2 seconds for    5504 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:53:47
Iteration 1 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:53:49
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 4eb7b62ee657                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 4eb7b62ee657-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61978

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:54:00

                                                               02/13/26 03:54:00
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:54:00

 Performing Decomposition -- Phase 1                           02/13/26 03:54:00

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:54:00
 Performing Decomposition -- Phase 3                           02/13/26 03:54:00

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     3.332E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:54:00
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
 cpu time per zone cycle............       174 nanoseconds
 average cpu time per zone cycle....       782 nanoseconds
 average clock time per zone cycle..       863 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:00
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:01
    1987 t 7.5995E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:01
    2091 t 7.9966E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:01
    2196 t 8.3975E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:01
    2301 t 8.7980E-05 dt 3.81E-08 write d3plot file            02/13/26 03:54:01
    2406 t 9.1972E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:01
    2512 t 9.5985E-05 dt 3.78E-08 write d3plot file            02/13/26 03:54:01
    2618 t 9.9977E-05 dt 3.76E-08 write d3plot file            02/13/26 03:54:01
    2725 t 1.0398E-04 dt 3.72E-08 write d3plot file            02/13/26 03:54:01
    2833 t 1.0798E-04 dt 3.69E-08 write d3plot file            02/13/26 03:54:01
    2942 t 1.1198E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:01
    3052 t 1.1599E-04 dt 3.63E-08 write d3plot file            02/13/26 03:54:01
    3162 t 1.1997E-04 dt 3.61E-08 write d3plot file            02/13/26 03:54:01
    3274 t 1.2400E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:01
    3386 t 1.2799E-04 dt 3.55E-08 write d3plot file            02/13/26 03:54:01
    3499 t 1.3200E-04 dt 3.53E-08 write d3plot file            02/13/26 03:54:01
    3612 t 1.3598E-04 dt 3.52E-08 write d3plot file            02/13/26 03:54:01
    3726 t 1.3999E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    3840 t 1.4399E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    3954 t 1.4798E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4069 t 1.5200E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4183 t 1.5599E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4297 t 1.5997E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4412 t 1.6400E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4526 t 1.6799E-04 dt 3.50E-08 write d3plot file            02/13/26 03:54:01
    4640 t 1.7199E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    4754 t 1.7599E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    4868 t 1.7998E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    4982 t 1.8398E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    5000 t 1.8461E-04 dt 3.51E-08 flush i/o buffers            02/13/26 03:54:01
    5096 t 1.8798E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    5210 t 1.9198E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    5324 t 1.9598E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:01
    5438 t 1.9997E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:02

 *** termination time reached ***
    5438 t 2.0001E-04 dt 3.51E-08 write d3dump01 file          02/13/26 03:54:02
    5438 t 2.0001E-04 dt 3.51E-08 flush i/o buffers            02/13/26 03:54:02
    5438 t 2.0001E-04 dt 3.51E-08 write d3plot file            02/13/26 03:54:02

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:02

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1273K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1291K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4034E-02    0.20     1.4070E-02    0.12
    KW Reading ......... 3.2136E-03    0.05     3.2140E-03    0.03
    KW Writing ......... 8.3795E-04    0.01     8.3800E-04    0.01
  MPP Decomposition .... 1.9343E-02    0.28     2.0165E-02    0.17
    Init Proc .......... 1.0532E-02    0.15     1.1092E-02    0.09
    Decomposition ...... 1.8078E-03    0.03     1.8075E-03    0.01
    Translation ........ 6.9754E-03    0.10     7.2370E-03    0.06
  Initialization ....... 5.3249E+00   77.03     1.0571E+01   86.91
    Init Proc Phase 1 .. 7.0576E-03    0.10     7.5295E-03    0.06
    Init Proc Phase 2 .. 1.9364E-03    0.03     2.4950E-03    0.02
  Init solver .......... 2.8115E-04    0.00     2.8100E-04    0.00
  Element processing ... 4.7030E-01    6.80     4.7013E-01    3.87
    Solids ............. 3.2471E-01    4.70     3.2372E-01    2.66
    Shells ............. 8.7472E-02    1.27     8.7476E-02    0.72
    E Other ............ 1.6251E-02    0.24     1.6362E-02    0.13
  Binary databases ..... 6.6406E-02    0.96     6.6618E-02    0.55
  ASCII database ....... 4.4743E-01    6.47     4.4666E-01    3.67
  Contact algorithm .... 2.2436E-01    3.25     2.2432E-01    1.84
    Interf. ID         1 1.6394E-01    2.37     1.6358E-01    1.34
  Rigid Bodies ......... 9.1249E-03    0.13     9.0140E-03    0.07
  Time step size ....... 3.3161E-02    0.48     3.2928E-02    0.27
  Group force file ..... 4.8522E-03    0.07     5.1980E-03    0.04
  Others ............... 5.3464E-02    0.77     5.3503E-02    0.44
    Force Sharing ...... 3.1030E-02    0.45     3.0862E-02    0.25
  Misc. 1 .............. 1.4268E-01    2.06     1.4570E-01    1.20
    Scale Masses ....... 4.1458E-03    0.06     4.2140E-03    0.03
    Force Constraints .. 4.1318E-03    0.06     4.1465E-03    0.03
    Force to Accel ..... 1.1889E-02    0.17     1.1842E-02    0.10
    Constraint Sharing . 4.5199E-03    0.07     4.5740E-03    0.04
    Update RB nodes .... 4.5793E-03    0.07     4.6315E-03    0.04
  Misc. 2 .............. 2.8705E-02    0.42     2.8370E-02    0.23
  Misc. 3 .............. 4.8724E-02    0.70     4.9226E-02    0.40
  Misc. 4 .............. 2.5346E-02    0.37     2.5663E-02    0.21
    Timestep Init ...... 7.7299E-03    0.11     7.7375E-03    0.06
    Apply Loads ........ 8.8560E-03    0.13     8.8205E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.9131E+00  100.00     1.2162E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5438
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1221.016 nanoseconds
 Clock time per zone cycle=        279.717 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   4eb7b62ee657                              0.24387   1.6900E+00
  #       1   4eb7b62ee657                              1.75613   1.2170E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3860E+01


 Start time   02/13/2026 03:54:00
 End time     02/13/2026 03:54:02
 Elapsed time       2 seconds for    5438 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:02
Iteration 2 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:54:03
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 09ed2c5f2f61                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 09ed2c5f2f61-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61977

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:54:14

                                                               02/13/26 03:54:14
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:54:14

 Performing Decomposition -- Phase 1                           02/13/26 03:54:14

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:54:14
 Performing Decomposition -- Phase 3                           02/13/26 03:54:14

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     3.725E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:54:14
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
 cpu time per zone cycle............       177 nanoseconds
 average cpu time per zone cycle....       806 nanoseconds
 average clock time per zone cycle..       902 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:14
    1882 t 7.1981E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:14
    1987 t 7.5994E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:14
    2091 t 7.9966E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:14
    2196 t 8.3974E-05 dt 3.81E-08 write d3plot file            02/13/26 03:54:14
    2301 t 8.7971E-05 dt 3.80E-08 write d3plot file            02/13/26 03:54:15
    2407 t 9.2000E-05 dt 3.80E-08 write d3plot file            02/13/26 03:54:15
    2512 t 9.5981E-05 dt 3.78E-08 write d3plot file            02/13/26 03:54:15
    2618 t 9.9980E-05 dt 3.76E-08 write d3plot file            02/13/26 03:54:15
    2725 t 1.0399E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:15
    2833 t 1.0800E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:15
    2941 t 1.1199E-04 dt 3.68E-08 write d3plot file            02/13/26 03:54:15
    3050 t 1.1599E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:15
    3160 t 1.1999E-04 dt 3.63E-08 write d3plot file            02/13/26 03:54:15
    3270 t 1.2398E-04 dt 3.61E-08 write d3plot file            02/13/26 03:54:15
    3381 t 1.2798E-04 dt 3.60E-08 write d3plot file            02/13/26 03:54:15
    3492 t 1.3197E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    3604 t 1.3599E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:15
    3716 t 1.4000E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:15
    3827 t 1.4397E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:15
    3939 t 1.4798E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:15
    4051 t 1.5200E-04 dt 3.58E-08 write d3plot file            02/13/26 03:54:15
    4162 t 1.5597E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4274 t 1.5999E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4385 t 1.6398E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4497 t 1.6800E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4608 t 1.7199E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4719 t 1.7597E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4831 t 1.8000E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    4942 t 1.8398E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    5000 t 1.8607E-04 dt 3.59E-08 flush i/o buffers            02/13/26 03:54:15
    5053 t 1.8797E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    5165 t 1.9199E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    5276 t 1.9598E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15
    5387 t 1.9996E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15

 *** termination time reached ***
    5387 t 2.0000E-04 dt 3.59E-08 write d3dump01 file          02/13/26 03:54:15
    5387 t 2.0000E-04 dt 3.59E-08 flush i/o buffers            02/13/26 03:54:15
    5387 t 2.0000E-04 dt 3.59E-08 write d3plot file            02/13/26 03:54:15

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:15

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.3815E-02    0.20     1.3843E-02    0.11
    KW Reading ......... 3.2295E-03    0.05     3.2300E-03    0.03
    KW Writing ......... 8.4352E-04    0.01     8.4400E-04    0.01
  MPP Decomposition .... 1.9360E-02    0.28     2.0147E-02    0.16
    Init Proc .......... 1.0514E-02    0.15     1.1046E-02    0.09
    Decomposition ...... 1.7379E-03    0.03     1.7375E-03    0.01
    Translation ........ 7.0813E-03    0.10     7.3355E-03    0.06
  Initialization ....... 5.3553E+00   77.22     1.0631E+01   87.04
    Init Proc Phase 1 .. 7.1352E-03    0.10     7.5790E-03    0.06
    Init Proc Phase 2 .. 1.9358E-03    0.03     2.4675E-03    0.02
  Init solver .......... 2.8766E-04    0.00     2.8800E-04    0.00
  Element processing ... 4.6648E-01    6.73     4.6631E-01    3.82
    Solids ............. 3.2227E-01    4.65     3.2113E-01    2.63
    Shells ............. 8.6312E-02    1.24     8.6407E-02    0.71
    E Other ............ 1.6123E-02    0.23     1.6298E-02    0.13
  Binary databases ..... 6.6156E-02    0.95     6.6367E-02    0.54
  ASCII database ....... 4.4696E-01    6.44     4.4618E-01    3.65
  Contact algorithm .... 2.2480E-01    3.24     2.2466E-01    1.84
    Interf. ID         1 1.6508E-01    2.38     1.6469E-01    1.35
  Rigid Bodies ......... 8.9726E-03    0.13     8.8645E-03    0.07
  Time step size ....... 3.1659E-02    0.46     3.1499E-02    0.26
  Group force file ..... 4.7910E-03    0.07     5.1525E-03    0.04
  Others ............... 5.2446E-02    0.76     5.2585E-02    0.43
    Force Sharing ...... 3.0336E-02    0.44     3.0140E-02    0.25
  Misc. 1 .............. 1.4155E-01    2.04     1.4452E-01    1.18
    Scale Masses ....... 3.9863E-03    0.06     4.0625E-03    0.03
    Force Constraints .. 4.0937E-03    0.06     4.0555E-03    0.03
    Force to Accel ..... 1.1761E-02    0.17     1.1769E-02    0.10
    Constraint Sharing . 4.4529E-03    0.06     4.5105E-03    0.04
    Update RB nodes .... 4.5269E-03    0.07     4.5435E-03    0.04
  Misc. 2 .............. 2.7865E-02    0.40     2.7502E-02    0.23
  Misc. 3 .............. 4.9755E-02    0.72     5.0170E-02    0.41
  Misc. 4 .............. 2.4893E-02    0.36     2.5186E-02    0.21
    Timestep Init ...... 7.5684E-03    0.11     7.4960E-03    0.06
    Apply Loads ........ 8.6145E-03    0.12     8.5620E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.9351E+00  100.00     1.2215E+01  100.00

 Problem time       =    2.0000E-04
 Problem cycle      =      5387
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1236.559 nanoseconds
 Clock time per zone cycle=        280.858 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   09ed2c5f2f61                              0.24155   1.6800E+00
  #       1   09ed2c5f2f61                              1.75845   1.2230E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3910E+01


 Start time   02/13/2026 03:54:14
 End time     02/13/2026 03:54:15
 Elapsed time       1 second  for    5387 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:15
Iteration 3 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:54:18
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 8398b12e2389                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 8398b12e2389-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61959

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:54:28

                                                               02/13/26 03:54:28
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:54:28

 Performing Decomposition -- Phase 1                           02/13/26 03:54:28

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:54:28
 Performing Decomposition -- Phase 3                           02/13/26 03:54:28

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     4.081E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:54:28
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
 cpu time per zone cycle............       175 nanoseconds
 average cpu time per zone cycle....       782 nanoseconds
 average clock time per zone cycle..       886 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:28
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:29
    1882 t 7.1981E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:29
    1987 t 7.5995E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:29
    2091 t 7.9969E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:29
    2196 t 8.3974E-05 dt 3.81E-08 write d3plot file            02/13/26 03:54:29
    2301 t 8.7965E-05 dt 3.80E-08 write d3plot file            02/13/26 03:54:29
    2407 t 9.1991E-05 dt 3.80E-08 write d3plot file            02/13/26 03:54:29
    2512 t 9.5973E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:29
    2618 t 9.9980E-05 dt 3.77E-08 write d3plot file            02/13/26 03:54:29
    2724 t 1.0397E-04 dt 3.75E-08 write d3plot file            02/13/26 03:54:29
    2831 t 1.0796E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:29
    2939 t 1.1198E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:29
    3047 t 1.1597E-04 dt 3.69E-08 write d3plot file            02/13/26 03:54:29
    3156 t 1.1999E-04 dt 3.67E-08 write d3plot file            02/13/26 03:54:29
    3265 t 1.2398E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:29
    3375 t 1.2800E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    3484 t 1.3198E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    3594 t 1.3598E-04 dt 3.64E-08 write d3plot file            02/13/26 03:54:29
    3704 t 1.3999E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    3813 t 1.4397E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    3923 t 1.4798E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    4033 t 1.5200E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:29
    4142 t 1.5598E-04 dt 3.65E-08 write d3plot file            02/13/26 03:54:30
    4252 t 1.6000E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4361 t 1.6399E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4470 t 1.6797E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4580 t 1.7199E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4689 t 1.7598E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4798 t 1.7996E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    4908 t 1.8399E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    5000 t 1.8735E-04 dt 3.66E-08 flush i/o buffers            02/13/26 03:54:30
    5017 t 1.8797E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    5127 t 1.9199E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    5236 t 1.9598E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30
    5345 t 1.9997E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30

 *** termination time reached ***
    5345 t 2.0000E-04 dt 3.66E-08 write d3dump01 file          02/13/26 03:54:30
    5345 t 2.0000E-04 dt 3.66E-08 flush i/o buffers            02/13/26 03:54:30
    5345 t 2.0000E-04 dt 3.66E-08 write d3plot file            02/13/26 03:54:30

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:30

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4095E-02    0.21     1.4127E-02    0.12
    KW Reading ......... 3.2227E-03    0.05     3.2230E-03    0.03
    KW Writing ......... 8.6161E-04    0.01     8.6150E-04    0.01
  MPP Decomposition .... 2.0151E-02    0.30     2.0933E-02    0.18
    Init Proc .......... 1.0554E-02    0.16     1.1066E-02    0.09
    Decomposition ...... 2.4403E-03    0.04     2.4400E-03    0.02
    Translation ........ 7.1259E-03    0.11     7.3970E-03    0.06
  Initialization ....... 5.1566E+00   76.57     1.0234E+01   86.62
    Init Proc Phase 1 .. 7.1081E-03    0.11     7.5790E-03    0.06
    Init Proc Phase 2 .. 2.1927E-03    0.03     2.7920E-03    0.02
  Init solver .......... 2.4253E-04    0.00     2.4250E-04    0.00
  Element processing ... 4.6438E-01    6.90     4.6414E-01    3.93
    Solids ............. 3.2193E-01    4.78     3.2084E-01    2.72
    Shells ............. 8.4602E-02    1.26     8.4620E-02    0.72
    E Other ............ 1.6129E-02    0.24     1.6172E-02    0.14
  Binary databases ..... 7.1237E-02    1.06     7.1490E-02    0.61
  ASCII database ....... 4.4644E-01    6.63     4.4563E-01    3.77
  Contact algorithm .... 2.2101E-01    3.28     2.2098E-01    1.87
    Interf. ID         1 1.6220E-01    2.41     1.6181E-01    1.37
  Rigid Bodies ......... 9.0334E-03    0.13     8.9250E-03    0.08
  Time step size ....... 3.0765E-02    0.46     3.0554E-02    0.26
  Group force file ..... 4.7470E-03    0.07     5.1380E-03    0.04
  Others ............... 5.2193E-02    0.78     5.2295E-02    0.44
    Force Sharing ...... 3.0151E-02    0.45     2.9936E-02    0.25
  Misc. 1 .............. 1.4028E-01    2.08     1.4309E-01    1.21
    Scale Masses ....... 4.0314E-03    0.06     4.0905E-03    0.03
    Force Constraints .. 4.0420E-03    0.06     4.0135E-03    0.03
    Force to Accel ..... 1.1686E-02    0.17     1.1588E-02    0.10
    Constraint Sharing . 4.3999E-03    0.07     4.4515E-03    0.04
    Update RB nodes .... 4.4644E-03    0.07     4.5295E-03    0.04
  Misc. 2 .............. 2.8076E-02    0.42     2.7648E-02    0.23
  Misc. 3 .............. 4.9983E-02    0.74     5.0553E-02    0.43
  Misc. 4 .............. 2.5118E-02    0.37     2.5425E-02    0.22
    Timestep Init ...... 7.5679E-03    0.11     7.5495E-03    0.06
    Apply Loads ........ 8.8528E-03    0.13     8.7580E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7343E+00  100.00     1.1815E+01  100.00

 Problem time       =    2.0000E-04
 Problem cycle      =      5345
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1209.349 nanoseconds
 Clock time per zone cycle=        282.484 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   8398b12e2389                              0.24870   1.6800E+00
  #       1   8398b12e2389                              1.75130   1.1830E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3510E+01


 Start time   02/13/2026 03:54:28
 End time     02/13/2026 03:54:30
 Elapsed time       2 seconds for    5345 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:30
Iteration 4 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
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 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
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 * ISO 9001:2015 company.                                      *
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 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
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 ***************************************************************

      Date: 02/13/2026      Time: 03:54:32
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 4af10a5e9db4                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 4af10a5e9db4-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61977

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:54:43

                                                               02/13/26 03:54:43
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:54:43

 Performing Decomposition -- Phase 1                           02/13/26 03:54:43

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:54:43
 Performing Decomposition -- Phase 3                           02/13/26 03:54:43

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     4.408E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:54:43
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
 cpu time per zone cycle............       175 nanoseconds
 average cpu time per zone cycle....       787 nanoseconds
 average clock time per zone cycle..       873 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1882 t 7.1981E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:43
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:43
    2091 t 7.9970E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:43
    2196 t 8.3970E-05 dt 3.80E-08 write d3plot file            02/13/26 03:54:43
    2302 t 8.7993E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:43
    2407 t 9.1975E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:43
    2513 t 9.5990E-05 dt 3.78E-08 write d3plot file            02/13/26 03:54:43
    2619 t 9.9998E-05 dt 3.78E-08 write d3plot file            02/13/26 03:54:44
    2725 t 1.0400E-04 dt 3.76E-08 write d3plot file            02/13/26 03:54:44
    2831 t 1.0798E-04 dt 3.75E-08 write d3plot file            02/13/26 03:54:44
    2938 t 1.1198E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:44
    3045 t 1.1596E-04 dt 3.72E-08 write d3plot file            02/13/26 03:54:44
    3153 t 1.1997E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3261 t 1.2397E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3370 t 1.2800E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3478 t 1.3199E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3586 t 1.3598E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3694 t 1.3998E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3802 t 1.4397E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    3910 t 1.4797E-04 dt 3.70E-08 write d3plot file            02/13/26 03:54:44
    4018 t 1.5197E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4126 t 1.5597E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4234 t 1.5998E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4342 t 1.6399E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4450 t 1.6799E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4558 t 1.7199E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4666 t 1.7600E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4773 t 1.7997E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4881 t 1.8397E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    4989 t 1.8797E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    5000 t 1.8838E-04 dt 3.71E-08 flush i/o buffers            02/13/26 03:54:44
    5097 t 1.9198E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    5205 t 1.9598E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44
    5313 t 1.9999E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44

 *** termination time reached ***
    5313 t 2.0003E-04 dt 3.71E-08 write d3dump01 file          02/13/26 03:54:44
    5313 t 2.0003E-04 dt 3.71E-08 flush i/o buffers            02/13/26 03:54:44
    5313 t 2.0003E-04 dt 3.71E-08 write d3plot file            02/13/26 03:54:44

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:44

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.3953E-02    0.21     1.3990E-02    0.12
    KW Reading ......... 3.1859E-03    0.05     3.1860E-03    0.03
    KW Writing ......... 8.4305E-04    0.01     8.4300E-04    0.01
  MPP Decomposition .... 1.9531E-02    0.29     2.0353E-02    0.17
    Init Proc .......... 1.0491E-02    0.16     1.0995E-02    0.09
    Decomposition ...... 1.8294E-03    0.03     1.8295E-03    0.02
    Translation ........ 7.1813E-03    0.11     7.4970E-03    0.06
  Initialization ....... 5.1673E+00   76.72     1.0255E+01   86.71
    Init Proc Phase 1 .. 7.1132E-03    0.11     7.5835E-03    0.06
    Init Proc Phase 2 .. 1.9210E-03    0.03     2.5430E-03    0.02
  Init solver .......... 2.7717E-04    0.00     2.7700E-04    0.00
  Element processing ... 4.5991E-01    6.83     4.5975E-01    3.89
    Solids ............. 3.1844E-01    4.73     3.1742E-01    2.68
    Shells ............. 8.4742E-02    1.26     8.4727E-02    0.72
    E Other ............ 1.6004E-02    0.24     1.6108E-02    0.14
  Binary databases ..... 6.5802E-02    0.98     6.6014E-02    0.56
  ASCII database ....... 4.4900E-01    6.67     4.4816E-01    3.79
  Contact algorithm .... 2.1864E-01    3.25     2.1853E-01    1.85
    Interf. ID         1 1.5971E-01    2.37     1.5939E-01    1.35
  Rigid Bodies ......... 8.9493E-03    0.13     8.8355E-03    0.07
  Time step size ....... 3.1085E-02    0.46     3.0891E-02    0.26
  Group force file ..... 4.8116E-03    0.07     5.1950E-03    0.04
  Others ............... 5.2353E-02    0.78     5.2511E-02    0.44
    Force Sharing ...... 3.0239E-02    0.45     3.0066E-02    0.25
  Misc. 1 .............. 1.4123E-01    2.10     1.4418E-01    1.22
    Scale Masses ....... 3.9976E-03    0.06     4.0440E-03    0.03
    Force Constraints .. 4.0585E-03    0.06     4.0445E-03    0.03
    Force to Accel ..... 1.1641E-02    0.17     1.1609E-02    0.10
    Constraint Sharing . 4.4423E-03    0.07     4.5505E-03    0.04
    Update RB nodes .... 4.4786E-03    0.07     4.5215E-03    0.04
  Misc. 2 .............. 2.8583E-02    0.42     2.8187E-02    0.24
  Misc. 3 .............. 4.8964E-02    0.73     4.9688E-02    0.42
  Misc. 4 .............. 2.4767E-02    0.37     2.5009E-02    0.21
    Timestep Init ...... 7.6328E-03    0.11     7.6405E-03    0.06
    Apply Loads ........ 8.5756E-03    0.13     8.4925E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7352E+00  100.00     1.1826E+01  100.00

 Problem time       =    2.0003E-04
 Problem cycle      =      5313
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1216.906 nanoseconds
 Clock time per zone cycle=        282.552 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   4af10a5e9db4                              0.24574   1.6600E+00
  #       1   4af10a5e9db4                              1.75426   1.1850E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3510E+01


 Start time   02/13/2026 03:54:43
 End time     02/13/2026 03:54:44
 Elapsed time       1 second  for    5313 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:44
Iteration 5 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:54:47
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : efc894aafac6                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: efc894aafac6-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61970

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:54:57

                                                               02/13/26 03:54:57
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:54:57

 Performing Decomposition -- Phase 1                           02/13/26 03:54:57

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:54:57
 Performing Decomposition -- Phase 3                           02/13/26 03:54:57

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     4.712E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:54:57
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:54:57
 cpu time per zone cycle............       175 nanoseconds
 average cpu time per zone cycle....       816 nanoseconds
 average clock time per zone cycle..       902 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:57
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:54:57
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:57
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:57
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:54:58
    1987 t 7.5997E-05 dt 3.82E-08 write d3plot file            02/13/26 03:54:58
    2091 t 7.9971E-05 dt 3.81E-08 write d3plot file            02/13/26 03:54:58
    2196 t 8.3966E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:58
    2302 t 8.7987E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:58
    2407 t 9.1968E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:58
    2513 t 9.5984E-05 dt 3.79E-08 write d3plot file            02/13/26 03:54:58
    2619 t 9.9996E-05 dt 3.78E-08 write d3plot file            02/13/26 03:54:58
    2724 t 1.0396E-04 dt 3.77E-08 write d3plot file            02/13/26 03:54:58
    2831 t 1.0800E-04 dt 3.76E-08 write d3plot file            02/13/26 03:54:58
    2937 t 1.1198E-04 dt 3.75E-08 write d3plot file            02/13/26 03:54:58
    3044 t 1.1598E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:58
    3151 t 1.1998E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3258 t 1.2397E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3366 t 1.2800E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3473 t 1.3199E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3580 t 1.3598E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3687 t 1.3997E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3794 t 1.4396E-04 dt 3.73E-08 write d3plot file            02/13/26 03:54:58
    3902 t 1.4800E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4009 t 1.5200E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4115 t 1.5596E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4222 t 1.5997E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4329 t 1.6397E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4436 t 1.6797E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4543 t 1.7197E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4650 t 1.7597E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4757 t 1.7997E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4864 t 1.8397E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    4971 t 1.8797E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    5000 t 1.8906E-04 dt 3.74E-08 flush i/o buffers            02/13/26 03:54:59
    5078 t 1.9197E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    5185 t 1.9597E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59
    5292 t 1.9998E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59

 *** termination time reached ***
    5292 t 2.0001E-04 dt 3.74E-08 write d3dump01 file          02/13/26 03:54:59
    5292 t 2.0001E-04 dt 3.74E-08 flush i/o buffers            02/13/26 03:54:59
    5292 t 2.0001E-04 dt 3.74E-08 write d3plot file            02/13/26 03:54:59

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:59

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4390E-02    0.21     1.4418E-02    0.12
    KW Reading ......... 3.2622E-03    0.05     3.2625E-03    0.03
    KW Writing ......... 8.6604E-04    0.01     8.6650E-04    0.01
  MPP Decomposition .... 1.9730E-02    0.29     2.0473E-02    0.17
    Init Proc .......... 1.0692E-02    0.16     1.1232E-02    0.09
    Decomposition ...... 1.8333E-03    0.03     1.8350E-03    0.02
    Translation ........ 7.1758E-03    0.11     7.3755E-03    0.06
  Initialization ....... 5.2297E+00   76.80     1.0380E+01   86.77
    Init Proc Phase 1 .. 7.0966E-03    0.10     7.5080E-03    0.06
    Init Proc Phase 2 .. 2.0838E-03    0.03     2.5285E-03    0.02
  Init solver .......... 2.9799E-04    0.00     2.9850E-04    0.00
  Element processing ... 4.6197E-01    6.78     4.6175E-01    3.86
    Solids ............. 3.2033E-01    4.70     3.1918E-01    2.67
    Shells ............. 8.4326E-02    1.24     8.4343E-02    0.70
    E Other ............ 1.6026E-02    0.24     1.6084E-02    0.13
  Binary databases ..... 6.8631E-02    1.01     6.8852E-02    0.58
  ASCII database ....... 4.5183E-01    6.64     4.5102E-01    3.77
  Contact algorithm .... 2.1649E-01    3.18     2.1647E-01    1.81
    Interf. ID         1 1.5674E-01    2.30     1.5637E-01    1.31
  Rigid Bodies ......... 9.0463E-03    0.13     8.9265E-03    0.07
  Time step size ....... 3.2573E-02    0.48     3.2398E-02    0.27
  Group force file ..... 4.8053E-03    0.07     5.2690E-03    0.04
  Others ............... 5.3103E-02    0.78     5.3249E-02    0.45
    Force Sharing ...... 3.1066E-02    0.46     3.0889E-02    0.26
  Misc. 1 .............. 1.4297E-01    2.10     1.4570E-01    1.22
    Scale Masses ....... 3.9476E-03    0.06     3.9850E-03    0.03
    Force Constraints .. 4.0729E-03    0.06     4.0795E-03    0.03
    Force to Accel ..... 1.1572E-02    0.17     1.1526E-02    0.10
    Constraint Sharing . 4.3009E-03    0.06     4.3545E-03    0.04
    Update RB nodes .... 4.4329E-03    0.07     4.4915E-03    0.04
  Misc. 2 .............. 2.8632E-02    0.42     2.8181E-02    0.24
  Misc. 3 .............. 5.0307E-02    0.74     5.1034E-02    0.43
  Misc. 4 .............. 2.5104E-02    0.37     2.5341E-02    0.21
    Timestep Init ...... 7.6696E-03    0.11     7.6620E-03    0.06
    Apply Loads ........ 8.8511E-03    0.13     8.8070E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.8096E+00  100.00     1.1964E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5292
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1235.531 nanoseconds
 Clock time per zone cycle=        285.753 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   efc894aafac6                              0.24597   1.6800E+00
  #       1   efc894aafac6                              1.75403   1.1980E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3660E+01


 Start time   02/13/2026 03:54:57
 End time     02/13/2026 03:54:59
 Elapsed time       2 seconds for    5292 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:54:59
Iteration 6 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:55:02
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 76043b918d01                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 76043b918d01-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61946

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:55:12

                                                               02/13/26 03:55:12
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:55:12

 Performing Decomposition -- Phase 1                           02/13/26 03:55:12

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:55:12
 Performing Decomposition -- Phase 3                           02/13/26 03:55:12

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     4.998E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:55:12
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
 cpu time per zone cycle............       178 nanoseconds
 average cpu time per zone cycle....       818 nanoseconds
 average clock time per zone cycle..       905 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:12
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:13
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:55:13
    2091 t 7.9971E-05 dt 3.81E-08 write d3plot file            02/13/26 03:55:13
    2197 t 8.3999E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:13
    2302 t 8.7983E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:13
    2407 t 9.1963E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:13
    2513 t 9.5976E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:13
    2619 t 9.9987E-05 dt 3.78E-08 write d3plot file            02/13/26 03:55:13
    2725 t 1.0399E-04 dt 3.78E-08 write d3plot file            02/13/26 03:55:13
    2831 t 1.0799E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:13
    2937 t 1.1198E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    3043 t 1.1597E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    3150 t 1.1999E-04 dt 3.75E-08 write d3plot file            02/13/26 03:55:13
    3256 t 1.2396E-04 dt 3.75E-08 write d3plot file            02/13/26 03:55:13
    3363 t 1.2798E-04 dt 3.75E-08 write d3plot file            02/13/26 03:55:13
    3470 t 1.3199E-04 dt 3.75E-08 write d3plot file            02/13/26 03:55:13
    3576 t 1.3597E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    3683 t 1.3999E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    3789 t 1.4398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    3895 t 1.4797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4002 t 1.5199E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4108 t 1.5598E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4214 t 1.5997E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4321 t 1.6400E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4427 t 1.6799E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4533 t 1.7198E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4639 t 1.7597E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4746 t 1.7999E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4852 t 1.8398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    4958 t 1.8797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    5000 t 1.8955E-04 dt 3.76E-08 flush i/o buffers            02/13/26 03:55:13
    5065 t 1.9200E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    5171 t 1.9598E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13
    5277 t 1.9997E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:13

 *** termination time reached ***
    5277 t 2.0001E-04 dt 3.76E-08 write d3dump01 file          02/13/26 03:55:14
    5277 t 2.0001E-04 dt 3.76E-08 flush i/o buffers            02/13/26 03:55:14
    5277 t 2.0001E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:14

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:14

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4176E-02    0.21     1.4207E-02    0.12
    KW Reading ......... 3.2713E-03    0.05     3.2720E-03    0.03
    KW Writing ......... 8.8659E-04    0.01     8.8700E-04    0.01
  MPP Decomposition .... 2.0881E-02    0.31     2.1528E-02    0.18
    Init Proc .......... 1.0897E-02    0.16     1.1345E-02    0.09
    Decomposition ...... 2.6233E-03    0.04     2.6250E-03    0.02
    Translation ........ 7.3189E-03    0.11     7.5145E-03    0.06
  Initialization ....... 5.2324E+00   76.90     1.0383E+01   86.83
    Init Proc Phase 1 .. 7.3321E-03    0.11     7.7735E-03    0.07
    Init Proc Phase 2 .. 2.3912E-03    0.04     3.0000E-03    0.03
  Init solver .......... 3.1042E-04    0.00     3.1150E-04    0.00
  Element processing ... 4.5296E-01    6.66     4.5284E-01    3.79
    Solids ............. 3.1332E-01    4.60     3.1220E-01    2.61
    Shells ............. 8.2584E-02    1.21     8.2634E-02    0.69
    E Other ............ 1.5957E-02    0.23     1.6082E-02    0.13
  Binary databases ..... 7.8379E-02    1.15     7.8604E-02    0.66
  ASCII database ....... 4.5034E-01    6.62     4.4949E-01    3.76
  Contact algorithm .... 2.1355E-01    3.14     2.1347E-01    1.79
    Interf. ID         1 1.5464E-01    2.27     1.5430E-01    1.29
  Rigid Bodies ......... 9.0360E-03    0.13     8.9330E-03    0.07
  Time step size ....... 3.1803E-02    0.47     3.1567E-02    0.26
  Group force file ..... 4.6932E-03    0.07     5.1150E-03    0.04
  Others ............... 5.1924E-02    0.76     5.2060E-02    0.44
    Force Sharing ...... 3.0002E-02    0.44     2.9796E-02    0.25
  Misc. 1 .............. 1.4115E-01    2.07     1.4398E-01    1.20
    Scale Masses ....... 3.9248E-03    0.06     4.0280E-03    0.03
    Force Constraints .. 4.0192E-03    0.06     4.0475E-03    0.03
    Force to Accel ..... 1.1611E-02    0.17     1.1571E-02    0.10
    Constraint Sharing . 4.3810E-03    0.06     4.4840E-03    0.04
    Update RB nodes .... 4.4095E-03    0.06     4.4250E-03    0.04
  Misc. 2 .............. 2.7733E-02    0.41     2.7289E-02    0.23
  Misc. 3 .............. 5.0103E-02    0.74     5.0563E-02    0.42
  Misc. 4 .............. 2.4905E-02    0.37     2.5174E-02    0.21
    Timestep Init ...... 7.5822E-03    0.11     7.5000E-03    0.06
    Apply Loads ........ 8.6959E-03    0.13     8.6845E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.8043E+00  100.00     1.1958E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5277
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1237.331 nanoseconds
 Clock time per zone cycle=        284.881 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   76043b918d01                              0.24469   1.6700E+00
  #       1   76043b918d01                              1.75531   1.1980E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3650E+01


 Start time   02/13/2026 03:55:12
 End time     02/13/2026 03:55:14
 Elapsed time       2 seconds for    5277 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:14
Iteration 7 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:55:16
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 67d7e62c5e72                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 67d7e62c5e72-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61931

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:55:27

                                                               02/13/26 03:55:27
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:55:27

 Performing Decomposition -- Phase 1                           02/13/26 03:55:27

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:55:27
 Performing Decomposition -- Phase 3                           02/13/26 03:55:27

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     5.268E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:55:27
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
 cpu time per zone cycle............       178 nanoseconds
 average cpu time per zone cycle....       791 nanoseconds
 average clock time per zone cycle..       871 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        15 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:27
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:28
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:55:28
    2091 t 7.9969E-05 dt 3.81E-08 write d3plot file            02/13/26 03:55:28
    2197 t 8.3994E-05 dt 3.80E-08 write d3plot file            02/13/26 03:55:28
    2302 t 8.7980E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:28
    2408 t 9.1993E-05 dt 3.78E-08 write d3plot file            02/13/26 03:55:28
    2514 t 9.5999E-05 dt 3.78E-08 write d3plot file            02/13/26 03:55:28
    2619 t 9.9964E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    2725 t 1.0396E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    2832 t 1.0800E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    2938 t 1.1199E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    3044 t 1.1598E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:28
    3150 t 1.1996E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:28
    3257 t 1.2399E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:28
    3363 t 1.2798E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:28
    3469 t 1.3196E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:28
    3576 t 1.3599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    3682 t 1.3999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    3788 t 1.4398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    3894 t 1.4798E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4000 t 1.5198E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4106 t 1.5598E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4212 t 1.5997E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4318 t 1.6397E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4424 t 1.6797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4530 t 1.7197E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:28
    4636 t 1.7597E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    4743 t 1.8000E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    4849 t 1.8400E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    4955 t 1.8800E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    5000 t 1.8969E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:29
    5061 t 1.9199E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    5167 t 1.9599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29
    5273 t 1.9999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29

 *** termination time reached ***
    5273 t 2.0003E-04 dt 3.77E-08 write d3dump01 file          02/13/26 03:55:29
    5273 t 2.0003E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:29
    5273 t 2.0003E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:29

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:29

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.3827E-02    0.19     1.3856E-02    0.11
    KW Reading ......... 3.1852E-03    0.04     3.1855E-03    0.03
    KW Writing ......... 8.5140E-04    0.01     8.5150E-04    0.01
  MPP Decomposition .... 2.0077E-02    0.28     2.0780E-02    0.17
    Init Proc .......... 1.0509E-02    0.15     1.0995E-02    0.09
    Decomposition ...... 1.9013E-03    0.03     1.9020E-03    0.02
    Translation ........ 7.6275E-03    0.11     7.8430E-03    0.06
  Initialization ....... 5.5512E+00   78.07     1.1022E+01   87.58
    Init Proc Phase 1 .. 7.0365E-03    0.10     7.4670E-03    0.06
    Init Proc Phase 2 .. 2.1730E-03    0.03     2.7125E-03    0.02
  Init solver .......... 2.7541E-04    0.00     2.7650E-04    0.00
  Element processing ... 4.5880E-01    6.45     4.5865E-01    3.64
    Solids ............. 3.1865E-01    4.48     3.1764E-01    2.52
    Shells ............. 8.3567E-02    1.18     8.3627E-02    0.66
    E Other ............ 1.6079E-02    0.23     1.6144E-02    0.13
  Binary databases ..... 7.0620E-02    0.99     7.0764E-02    0.56
  ASCII database ....... 4.4682E-01    6.28     4.4609E-01    3.54
  Contact algorithm .... 2.1045E-01    2.96     2.1034E-01    1.67
    Interf. ID         1 1.5247E-01    2.14     1.5218E-01    1.21
  Rigid Bodies ......... 9.0172E-03    0.13     8.9390E-03    0.07
  Time step size ....... 3.0070E-02    0.42     2.9924E-02    0.24
  Group force file ..... 4.7361E-03    0.07     5.0840E-03    0.04
  Others ............... 5.1861E-02    0.73     5.1944E-02    0.41
    Force Sharing ...... 2.9891E-02    0.42     2.9718E-02    0.24
  Misc. 1 .............. 1.4072E-01    1.98     1.4353E-01    1.14
    Scale Masses ....... 3.9494E-03    0.06     3.9835E-03    0.03
    Force Constraints .. 4.0358E-03    0.06     4.0700E-03    0.03
    Force to Accel ..... 1.1558E-02    0.16     1.1517E-02    0.09
    Constraint Sharing . 4.3419E-03    0.06     4.4875E-03    0.04
    Update RB nodes .... 4.3890E-03    0.06     4.3840E-03    0.03
  Misc. 2 .............. 2.7941E-02    0.39     2.7562E-02    0.22
  Misc. 3 .............. 4.9165E-02    0.69     4.9727E-02    0.40
  Misc. 4 .............. 2.4991E-02    0.35     2.5286E-02    0.20
    Timestep Init ...... 7.5557E-03    0.11     7.5115E-03    0.06
    Apply Loads ........ 8.8669E-03    0.12     8.7915E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            7.1106E+00  100.00     1.2585E+01  100.00

 Problem time       =    2.0003E-04
 Problem cycle      =      5273
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1295.576 nanoseconds
 Clock time per zone cycle=        283.006 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   67d7e62c5e72                              0.23282   1.6600E+00
  #       1   67d7e62c5e72                              1.76718   1.2600E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.4260E+01


 Start time   02/13/2026 03:55:27
 End time     02/13/2026 03:55:29
 Elapsed time       2 seconds for    5273 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:29
Iteration 8 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
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 * ISO 9001:2015 company.                                      *
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 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
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 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
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 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:55:31
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : e1dc3a91175e                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: e1dc3a91175e-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61968

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:55:42

                                                               02/13/26 03:55:42
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:55:42

 Performing Decomposition -- Phase 1                           02/13/26 03:55:42

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:55:42
 Performing Decomposition -- Phase 3                           02/13/26 03:55:42

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     5.525E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:55:42
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
 cpu time per zone cycle............       172 nanoseconds
 average cpu time per zone cycle....       783 nanoseconds
 average clock time per zone cycle..       871 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:42
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:55:42
    2091 t 7.9966E-05 dt 3.80E-08 write d3plot file            02/13/26 03:55:42
    2197 t 8.3991E-05 dt 3.80E-08 write d3plot file            02/13/26 03:55:42
    2302 t 8.7976E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:42
    2408 t 9.1984E-05 dt 3.78E-08 write d3plot file            02/13/26 03:55:42
    2514 t 9.5988E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:42
    2620 t 9.9985E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:42
    2726 t 1.0398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:42
    2832 t 1.0796E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:42
    2939 t 1.1199E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3045 t 1.1597E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3152 t 1.2000E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3258 t 1.2398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3364 t 1.2797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3471 t 1.3199E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:43
    3577 t 1.3598E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    3683 t 1.3998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    3789 t 1.4397E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    3895 t 1.4797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4001 t 1.5196E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4108 t 1.5600E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4214 t 1.5999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4320 t 1.6399E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4426 t 1.6798E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4532 t 1.7198E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4638 t 1.7597E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4744 t 1.7997E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4851 t 1.8400E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    4957 t 1.8799E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    5000 t 1.8962E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:43
    5063 t 1.9199E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    5169 t 1.9598E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43
    5275 t 1.9998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43

 *** termination time reached ***
    5275 t 2.0002E-04 dt 3.77E-08 write d3dump01 file          02/13/26 03:55:43
    5275 t 2.0002E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:43
    5275 t 2.0002E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:43

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:43

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4240E-02    0.21     1.4271E-02    0.12
    KW Reading ......... 3.3336E-03    0.05     3.3340E-03    0.03
    KW Writing ......... 8.4635E-04    0.01     8.4650E-04    0.01
  MPP Decomposition .... 1.9297E-02    0.29     2.0067E-02    0.17
    Init Proc .......... 1.0468E-02    0.16     1.0960E-02    0.09
    Decomposition ...... 1.7543E-03    0.03     1.7565E-03    0.01
    Translation ........ 7.0456E-03    0.10     7.3215E-03    0.06
  Initialization ....... 5.1922E+00   77.15     1.0306E+01   86.99
    Init Proc Phase 1 .. 7.0925E-03    0.11     7.5660E-03    0.06
    Init Proc Phase 2 .. 2.0098E-03    0.03     2.6530E-03    0.02
  Init solver .......... 2.6222E-04    0.00     2.6300E-04    0.00
  Element processing ... 4.5072E-01    6.70     4.5046E-01    3.80
    Solids ............. 3.1270E-01    4.65     3.1159E-01    2.63
    Shells ............. 8.1808E-02    1.22     8.1868E-02    0.69
    E Other ............ 1.5685E-02    0.23     1.5762E-02    0.13
  Binary databases ..... 6.6250E-02    0.98     6.6463E-02    0.56
  ASCII database ....... 4.4570E-01    6.62     4.4493E-01    3.76
  Contact algorithm .... 2.0777E-01    3.09     2.0772E-01    1.75
    Interf. ID         1 1.5074E-01    2.24     1.5054E-01    1.27
  Rigid Bodies ......... 8.9067E-03    0.13     8.7815E-03    0.07
  Time step size ....... 2.9451E-02    0.44     2.9227E-02    0.25
  Group force file ..... 4.7296E-03    0.07     5.0685E-03    0.04
  Others ............... 5.0519E-02    0.75     5.0598E-02    0.43
    Force Sharing ...... 2.8886E-02    0.43     2.8711E-02    0.24
  Misc. 1 .............. 1.3912E-01    2.07     1.4220E-01    1.20
    Scale Masses ....... 3.8636E-03    0.06     3.9535E-03    0.03
    Force Constraints .. 3.9641E-03    0.06     3.9885E-03    0.03
    Force to Accel ..... 1.1500E-02    0.17     1.1472E-02    0.10
    Constraint Sharing . 4.2981E-03    0.06     4.4100E-03    0.04
    Update RB nodes .... 4.3848E-03    0.07     4.4175E-03    0.04
  Misc. 2 .............. 2.7236E-02    0.40     2.6887E-02    0.23
  Misc. 3 .............. 4.9207E-02    0.73     4.9806E-02    0.42
  Misc. 4 .............. 2.4251E-02    0.36     2.4566E-02    0.21
    Timestep Init ...... 7.4596E-03    0.11     7.3875E-03    0.06
    Apply Loads ........ 8.3420E-03    0.12     8.3245E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7298E+00  100.00     1.1848E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5275
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1225.006 nanoseconds
 Clock time per zone cycle=        278.985 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   e1dc3a91175e                              0.24296   1.6400E+00
  #       1   e1dc3a91175e                              1.75704   1.1860E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3500E+01


 Start time   02/13/2026 03:55:42
 End time     02/13/2026 03:55:43
 Elapsed time       1 second  for    5275 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:43
Iteration 9 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
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 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
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 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
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 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
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 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
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      Date: 02/13/2026      Time: 03:55:46
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 402d5b5087da                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 402d5b5087da-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61954

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:55:56

                                                               02/13/26 03:55:56
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:55:56

 Performing Decomposition -- Phase 1                           02/13/26 03:55:56

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:55:56
 Performing Decomposition -- Phase 3                           02/13/26 03:55:56

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     5.771E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:55:56
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:55:56
 cpu time per zone cycle............       174 nanoseconds
 average cpu time per zone cycle....       783 nanoseconds
 average clock time per zone cycle..       890 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:56
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:55:56
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:56
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:55:57
    1987 t 7.5999E-05 dt 3.82E-08 write d3plot file            02/13/26 03:55:57
    2091 t 7.9962E-05 dt 3.80E-08 write d3plot file            02/13/26 03:55:57
    2197 t 8.3990E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:57
    2302 t 8.7972E-05 dt 3.79E-08 write d3plot file            02/13/26 03:55:57
    2408 t 9.1976E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    2514 t 9.5976E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    2620 t 9.9968E-05 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    2727 t 1.0399E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    2833 t 1.0798E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    2940 t 1.1200E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3046 t 1.1598E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3152 t 1.1996E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3259 t 1.2399E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3365 t 1.2797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3472 t 1.3200E-04 dt 3.76E-08 write d3plot file            02/13/26 03:55:57
    3578 t 1.3599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    3684 t 1.3998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    3790 t 1.4398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    3896 t 1.4797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:57
    4003 t 1.5200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4109 t 1.5599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4215 t 1.5998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4321 t 1.6398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4427 t 1.6797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4533 t 1.7196E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4640 t 1.7599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4746 t 1.7999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4852 t 1.8398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    4958 t 1.8797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    5000 t 1.8955E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:58
    5064 t 1.9196E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    5171 t 1.9599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58
    5277 t 1.9999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58

 *** termination time reached ***
    5277 t 2.0002E-04 dt 3.77E-08 write d3dump01 file          02/13/26 03:55:58
    5277 t 2.0002E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:55:58
    5277 t 2.0002E-04 dt 3.77E-08 write d3plot file            02/13/26 03:55:58

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:58

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.3388E-02    0.19     1.3418E-02    0.11
    KW Reading ......... 2.9156E-03    0.04     2.9160E-03    0.02
    KW Writing ......... 8.5516E-04    0.01     8.5500E-04    0.01
  MPP Decomposition .... 1.9558E-02    0.28     2.0445E-02    0.17
    Init Proc .......... 1.0549E-02    0.15     1.1110E-02    0.09
    Decomposition ...... 1.8290E-03    0.03     1.8290E-03    0.02
    Translation ........ 7.1507E-03    0.10     7.4755E-03    0.06
  Initialization ....... 5.3260E+00   77.48     1.0573E+01   87.20
    Init Proc Phase 1 .. 7.1366E-03    0.10     7.6155E-03    0.06
    Init Proc Phase 2 .. 1.9660E-03    0.03     2.5380E-03    0.02
  Init solver .......... 2.6157E-04    0.00     2.6200E-04    0.00
  Element processing ... 4.5372E-01    6.60     4.5358E-01    3.74
    Solids ............. 3.1497E-01    4.58     3.1398E-01    2.59
    Shells ............. 8.1677E-02    1.19     8.1641E-02    0.67
    E Other ............ 1.6000E-02    0.23     1.6085E-02    0.13
  Binary databases ..... 6.9344E-02    1.01     6.9576E-02    0.57
  ASCII database ....... 4.4423E-01    6.46     4.4361E-01    3.66
  Contact algorithm .... 2.0831E-01    3.03     2.0815E-01    1.72
    Interf. ID         1 1.5077E-01    2.19     1.5041E-01    1.24
  Rigid Bodies ......... 8.7278E-03    0.13     8.6485E-03    0.07
  Time step size ....... 3.0014E-02    0.44     2.9851E-02    0.25
  Group force file ..... 4.7421E-03    0.07     5.1335E-03    0.04
  Others ............... 5.1563E-02    0.75     5.1610E-02    0.43
    Force Sharing ...... 2.9790E-02    0.43     2.9591E-02    0.24
  Misc. 1 .............. 1.4048E-01    2.04     1.4347E-01    1.18
    Scale Masses ....... 3.9476E-03    0.06     4.0135E-03    0.03
    Force Constraints .. 3.9940E-03    0.06     4.0080E-03    0.03
    Force to Accel ..... 1.1563E-02    0.17     1.1503E-02    0.09
    Constraint Sharing . 4.3978E-03    0.06     4.4705E-03    0.04
    Update RB nodes .... 4.4008E-03    0.06     4.4745E-03    0.04
  Misc. 2 .............. 2.8543E-02    0.42     2.8192E-02    0.23
  Misc. 3 .............. 5.0873E-02    0.74     5.1393E-02    0.42
  Misc. 4 .............. 2.4595E-02    0.36     2.4815E-02    0.20
    Timestep Init ...... 7.5268E-03    0.11     7.4985E-03    0.06
    Apply Loads ........ 8.5777E-03    0.12     8.4695E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.8743E+00  100.00     1.2125E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5277
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1251.175 nanoseconds
 Clock time per zone cycle=        280.975 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   402d5b5087da                              0.23930   1.6500E+00
  #       1   402d5b5087da                              1.76070   1.2140E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3790E+01


 Start time   02/13/2026 03:55:56
 End time     02/13/2026 03:55:58
 Elapsed time       2 seconds for    5277 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:55:58
Iteration 10 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:56:00
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 95781be0f381                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 95781be0f381-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61956

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:56:11

                                                               02/13/26 03:56:11
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:56:11

 Performing Decomposition -- Phase 1                           02/13/26 03:56:11

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:56:11
 Performing Decomposition -- Phase 3                           02/13/26 03:56:11

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     6.007E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:56:11
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
 cpu time per zone cycle............       173 nanoseconds
 average cpu time per zone cycle....       797 nanoseconds
 average clock time per zone cycle..       884 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:11
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:12
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:56:12
    2092 t 7.9999E-05 dt 3.80E-08 write d3plot file            02/13/26 03:56:12
    2197 t 8.3989E-05 dt 3.79E-08 write d3plot file            02/13/26 03:56:12
    2302 t 8.7969E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:12
    2408 t 9.1971E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    2514 t 9.5970E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    2621 t 9.9998E-05 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    2727 t 1.0398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    2833 t 1.0797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    2940 t 1.1199E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    3046 t 1.1597E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    3153 t 1.1999E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    3259 t 1.2398E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    3365 t 1.2797E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:12
    3472 t 1.3200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    3578 t 1.3599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    3684 t 1.3998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    3790 t 1.4398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    3896 t 1.4797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4003 t 1.5200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4109 t 1.5599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4215 t 1.5998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4321 t 1.6398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4427 t 1.6797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:12
    4534 t 1.7200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    4640 t 1.7599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    4746 t 1.7998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    4852 t 1.8398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    4958 t 1.8797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    5000 t 1.8955E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:56:13
    5065 t 1.9200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    5171 t 1.9599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13
    5277 t 1.9998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13

 *** termination time reached ***
    5277 t 2.0002E-04 dt 3.77E-08 write d3dump01 file          02/13/26 03:56:13
    5277 t 2.0002E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:56:13
    5277 t 2.0002E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:13

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:13

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4057E-02    0.20     1.4083E-02    0.11
    KW Reading ......... 3.2384E-03    0.05     3.2385E-03    0.03
    KW Writing ......... 8.5071E-04    0.01     8.5100E-04    0.01
  MPP Decomposition .... 1.9619E-02    0.28     2.0407E-02    0.17
    Init Proc .......... 1.0618E-02    0.15     1.1151E-02    0.09
    Decomposition ...... 1.8057E-03    0.03     1.8060E-03    0.01
    Translation ........ 7.1670E-03    0.10     7.4215E-03    0.06
  Initialization ....... 5.4074E+00   77.87     1.0735E+01   87.45
    Init Proc Phase 1 .. 7.0748E-03    0.10     7.4645E-03    0.06
    Init Proc Phase 2 .. 2.0564E-03    0.03     2.6815E-03    0.02
  Init solver .......... 3.1473E-04    0.00     3.1500E-04    0.00
  Element processing ... 4.4962E-01    6.47     4.4943E-01    3.66
    Solids ............. 3.1237E-01    4.50     3.1124E-01    2.54
    Shells ............. 8.0974E-02    1.17     8.0973E-02    0.66
    E Other ............ 1.5698E-02    0.23     1.5880E-02    0.13
  Binary databases ..... 6.8995E-02    0.99     6.9189E-02    0.56
  ASCII database ....... 4.4454E-01    6.40     4.4380E-01    3.62
  Contact algorithm .... 2.0567E-01    2.96     2.0570E-01    1.68
    Interf. ID         1 1.4876E-01    2.14     1.4842E-01    1.21
  Rigid Bodies ......... 8.9522E-03    0.13     8.8590E-03    0.07
  Time step size ....... 2.9451E-02    0.42     2.9235E-02    0.24
  Group force file ..... 4.6882E-03    0.07     4.9910E-03    0.04
  Others ............... 5.0994E-02    0.73     5.1050E-02    0.42
    Force Sharing ...... 2.9317E-02    0.42     2.9117E-02    0.24
  Misc. 1 .............. 1.3894E-01    2.00     1.4170E-01    1.15
    Scale Masses ....... 3.8861E-03    0.06     3.9245E-03    0.03
    Force Constraints .. 4.0380E-03    0.06     4.0345E-03    0.03
    Force to Accel ..... 1.1558E-02    0.17     1.1503E-02    0.09
    Constraint Sharing . 4.3404E-03    0.06     4.4060E-03    0.04
    Update RB nodes .... 4.3905E-03    0.06     4.4255E-03    0.04
  Misc. 2 .............. 2.6998E-02    0.39     2.6666E-02    0.22
  Misc. 3 .............. 4.9876E-02    0.72     5.0381E-02    0.41
  Misc. 4 .............. 2.4220E-02    0.35     2.4506E-02    0.20
    Timestep Init ...... 7.4350E-03    0.11     7.4290E-03    0.06
    Apply Loads ........ 8.3825E-03    0.12     8.3420E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.9443E+00  100.00     1.2276E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5277
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1263.938 nanoseconds
 Clock time per zone cycle=        278.665 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   95781be0f381                              0.23420   1.6300E+00
  #       1   95781be0f381                              1.76580   1.2290E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3920E+01


 Start time   02/13/2026 03:56:11
 End time     02/13/2026 03:56:13
 Elapsed time       2 seconds for    5277 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:13
Iteration 11 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:56:15
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : db0b9a79d4e6                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: db0b9a79d4e6-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61941

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:56:26

                                                               02/13/26 03:56:26
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:56:26

 Performing Decomposition -- Phase 1                           02/13/26 03:56:26

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:56:26
 Performing Decomposition -- Phase 3                           02/13/26 03:56:26

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     6.233E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:56:26
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
 cpu time per zone cycle............       194 nanoseconds
 average cpu time per zone cycle....       786 nanoseconds
 average clock time per zone cycle..       875 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:26
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:56:26
    2092 t 7.9999E-05 dt 3.81E-08 write d3plot file            02/13/26 03:56:26
    2197 t 8.3989E-05 dt 3.79E-08 write d3plot file            02/13/26 03:56:26
    2302 t 8.7968E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:27
    2408 t 9.1972E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:27
    2514 t 9.5974E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    2620 t 9.9965E-05 dt 3.76E-08 write d3plot file            02/13/26 03:56:27
    2727 t 1.0399E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:27
    2833 t 1.0798E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:27
    2939 t 1.1197E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:27
    3046 t 1.1599E-04 dt 3.76E-08 write d3plot file            02/13/26 03:56:27
    3152 t 1.1999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3258 t 1.2398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3364 t 1.2797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3470 t 1.3197E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3576 t 1.3597E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3682 t 1.3997E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3788 t 1.4396E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    3895 t 1.4800E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4001 t 1.5199E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4107 t 1.5599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4213 t 1.5999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4319 t 1.6399E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4425 t 1.6798E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4531 t 1.7198E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4637 t 1.7598E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4743 t 1.7998E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4849 t 1.8398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    4955 t 1.8797E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    5000 t 1.8967E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:56:27
    5061 t 1.9197E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    5167 t 1.9596E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27
    5273 t 1.9996E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27

 *** termination time reached ***
    5273 t 2.0000E-04 dt 3.77E-08 write d3dump01 file          02/13/26 03:56:27
    5273 t 2.0000E-04 dt 3.77E-08 flush i/o buffers            02/13/26 03:56:27
    5273 t 2.0000E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:27

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:27

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4460E-02    0.21     1.4491E-02    0.12
    KW Reading ......... 3.3254E-03    0.05     3.3255E-03    0.03
    KW Writing ......... 8.3689E-04    0.01     8.3700E-04    0.01
  MPP Decomposition .... 1.9405E-02    0.29     2.0151E-02    0.17
    Init Proc .......... 1.0536E-02    0.15     1.1031E-02    0.09
    Decomposition ...... 1.7761E-03    0.03     1.7760E-03    0.01
    Translation ........ 7.0587E-03    0.10     7.3085E-03    0.06
  Initialization ....... 5.2599E+00   77.34     1.0441E+01   87.11
    Init Proc Phase 1 .. 7.1239E-03    0.10     7.5595E-03    0.06
    Init Proc Phase 2 .. 1.9358E-03    0.03     2.5290E-03    0.02
  Init solver .......... 3.0198E-04    0.00     3.0200E-04    0.00
  Element processing ... 4.5428E-01    6.68     4.5409E-01    3.79
    Solids ............. 3.1658E-01    4.65     3.1563E-01    2.63
    Shells ............. 8.1220E-02    1.19     8.1184E-02    0.68
    E Other ............ 1.5750E-02    0.23     1.5859E-02    0.13
  Binary databases ..... 6.5491E-02    0.96     6.5662E-02    0.55
  ASCII database ....... 4.4682E-01    6.57     4.4601E-01    3.72
  Contact algorithm .... 2.0640E-01    3.03     2.0636E-01    1.72
    Interf. ID         1 1.5007E-01    2.21     1.4981E-01    1.25
  Rigid Bodies ......... 9.0233E-03    0.13     8.9420E-03    0.07
  Time step size ....... 2.8969E-02    0.43     2.8844E-02    0.24
  Group force file ..... 4.6713E-03    0.07     4.9700E-03    0.04
  Others ............... 5.1008E-02    0.75     5.1074E-02    0.43
    Force Sharing ...... 2.9128E-02    0.43     2.8958E-02    0.24
  Misc. 1 .............. 1.3952E-01    2.05     1.4242E-01    1.19
    Scale Masses ....... 3.9307E-03    0.06     3.9415E-03    0.03
    Force Constraints .. 4.0278E-03    0.06     4.0065E-03    0.03
    Force to Accel ..... 1.1491E-02    0.17     1.1468E-02    0.10
    Constraint Sharing . 4.3436E-03    0.06     4.4050E-03    0.04
    Update RB nodes .... 4.3592E-03    0.06     4.4145E-03    0.04
  Misc. 2 .............. 2.7411E-02    0.40     2.7088E-02    0.23
  Misc. 3 .............. 4.9063E-02    0.72     4.9861E-02    0.42
  Misc. 4 .............. 2.4606E-02    0.36     2.4875E-02    0.21
    Timestep Init ...... 7.5559E-03    0.11     7.5870E-03    0.06
    Apply Loads ........ 8.5350E-03    0.13     8.4695E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.8013E+00  100.00     1.1987E+01  100.00

 Problem time       =    2.0000E-04
 Problem cycle      =      5273
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1238.547 nanoseconds
 Clock time per zone cycle=        279.745 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   db0b9a79d4e6                              0.24029   1.6400E+00
  #       1   db0b9a79d4e6                              1.75971   1.2010E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3650E+01


 Start time   02/13/2026 03:56:26
 End time     02/13/2026 03:56:27
 Elapsed time       1 second  for    5273 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:27
Iteration 12 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:56:30
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 6002ccd1e619                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 6002ccd1e619-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61947

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:56:40

                                                               02/13/26 03:56:40
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:56:40

 Performing Decomposition -- Phase 1                           02/13/26 03:56:40

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:56:40
 Performing Decomposition -- Phase 3                           02/13/26 03:56:40

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     6.452E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:56:40
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:56:40
 cpu time per zone cycle............       178 nanoseconds
 average cpu time per zone cycle....       794 nanoseconds
 average clock time per zone cycle..       902 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:40
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:40
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:40
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:40
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:41
    1987 t 7.5998E-05 dt 3.82E-08 write d3plot file            02/13/26 03:56:41
    2092 t 7.9999E-05 dt 3.81E-08 write d3plot file            02/13/26 03:56:41
    2197 t 8.3989E-05 dt 3.79E-08 write d3plot file            02/13/26 03:56:41
    2302 t 8.7969E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    2408 t 9.1976E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    2514 t 9.5979E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    2620 t 9.9974E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    2726 t 1.0397E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    2832 t 1.0796E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    2939 t 1.1200E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    3045 t 1.1599E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    3151 t 1.1999E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:41
    3257 t 1.2399E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3363 t 1.2800E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3468 t 1.3196E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3574 t 1.3597E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3680 t 1.3998E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3786 t 1.4398E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3892 t 1.4799E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    3998 t 1.5200E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:41
    4103 t 1.5597E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4209 t 1.5997E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4315 t 1.6398E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4421 t 1.6799E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4527 t 1.7199E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4633 t 1.7600E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4738 t 1.7997E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4844 t 1.8398E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    4950 t 1.8798E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    5000 t 1.8987E-04 dt 3.78E-08 flush i/o buffers            02/13/26 03:56:42
    5056 t 1.9199E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    5162 t 1.9600E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42
    5267 t 1.9997E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42

 *** termination time reached ***
    5267 t 2.0000E-04 dt 3.78E-08 write d3dump01 file          02/13/26 03:56:42
    5267 t 2.0000E-04 dt 3.78E-08 flush i/o buffers            02/13/26 03:56:42
    5267 t 2.0000E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:42

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:42

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4140E-02    0.21     1.4170E-02    0.12
    KW Reading ......... 3.2803E-03    0.05     3.2805E-03    0.03
    KW Writing ......... 8.5148E-04    0.01     8.5200E-04    0.01
  MPP Decomposition .... 2.0206E-02    0.30     2.0994E-02    0.18
    Init Proc .......... 1.0622E-02    0.16     1.1170E-02    0.09
    Decomposition ...... 2.5319E-03    0.04     2.5320E-03    0.02
    Translation ........ 7.0158E-03    0.10     7.2545E-03    0.06
  Initialization ....... 5.2289E+00   77.09     1.0377E+01   86.95
    Init Proc Phase 1 .. 7.0379E-03    0.10     7.5100E-03    0.06
    Init Proc Phase 2 .. 2.1895E-03    0.03     2.7880E-03    0.02
  Init solver .......... 2.6650E-04    0.00     2.6650E-04    0.00
  Element processing ... 4.5492E-01    6.71     4.5490E-01    3.81
    Solids ............. 3.1556E-01    4.65     3.1454E-01    2.64
    Shells ............. 8.2984E-02    1.22     8.3021E-02    0.70
    E Other ............ 1.5701E-02    0.23     1.5913E-02    0.13
  Binary databases ..... 7.2204E-02    1.06     7.2412E-02    0.61
  ASCII database ....... 4.4746E-01    6.60     4.4678E-01    3.74
  Contact algorithm .... 2.0743E-01    3.06     2.0739E-01    1.74
    Interf. ID         1 1.5022E-01    2.21     1.4988E-01    1.26
  Rigid Bodies ......... 9.1053E-03    0.13     9.0140E-03    0.08
  Time step size ....... 2.9421E-02    0.43     2.9106E-02    0.24
  Group force file ..... 4.8075E-03    0.07     5.1860E-03    0.04
  Others ............... 5.0771E-02    0.75     5.0869E-02    0.43
    Force Sharing ...... 2.9040E-02    0.43     2.8891E-02    0.24
  Misc. 1 .............. 1.3985E-01    2.06     1.4283E-01    1.20
    Scale Masses ....... 3.9577E-03    0.06     4.0165E-03    0.03
    Force Constraints .. 3.9949E-03    0.06     4.0180E-03    0.03
    Force to Accel ..... 1.1554E-02    0.17     1.1464E-02    0.10
    Constraint Sharing . 4.2765E-03    0.06     4.3520E-03    0.04
    Update RB nodes .... 4.3576E-03    0.06     4.3630E-03    0.04
  Misc. 2 .............. 2.7740E-02    0.41     2.7339E-02    0.23
  Misc. 3 .............. 5.1069E-02    0.75     5.1757E-02    0.43
  Misc. 4 .............. 2.4855E-02    0.37     2.5160E-02    0.21
    Timestep Init ...... 7.5188E-03    0.11     7.4620E-03    0.06
    Apply Loads ........ 8.8103E-03    0.13     8.7665E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7831E+00  100.00     1.1936E+01  100.00

 Problem time       =    2.0000E-04
 Problem cycle      =      5267
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1236.150 nanoseconds
 Clock time per zone cycle=        282.381 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   6002ccd1e619                              0.24265   1.6500E+00
  #       1   6002ccd1e619                              1.75735   1.1950E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3600E+01


 Start time   02/13/2026 03:56:40
 End time     02/13/2026 03:56:42
 Elapsed time       2 seconds for    5267 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:42
Iteration 13 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
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 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
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 ***************************************************************

      Date: 02/13/2026      Time: 03:56:45
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 99dbea00cbfc                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 99dbea00cbfc-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61976

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:56:55

                                                               02/13/26 03:56:55
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:56:55

 Performing Decomposition -- Phase 1                           02/13/26 03:56:55

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:56:55
 Performing Decomposition -- Phase 3                           02/13/26 03:56:55

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     6.664E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:56:55
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
 cpu time per zone cycle............       174 nanoseconds
 average cpu time per zone cycle....       808 nanoseconds
 average clock time per zone cycle..       915 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:56:55
    1987 t 7.5997E-05 dt 3.82E-08 write d3plot file            02/13/26 03:56:55
    2092 t 7.9999E-05 dt 3.81E-08 write d3plot file            02/13/26 03:56:55
    2197 t 8.3990E-05 dt 3.80E-08 write d3plot file            02/13/26 03:56:55
    2302 t 8.7972E-05 dt 3.79E-08 write d3plot file            02/13/26 03:56:55
    2408 t 9.1980E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:55
    2514 t 9.5986E-05 dt 3.78E-08 write d3plot file            02/13/26 03:56:55
    2620 t 9.9985E-05 dt 3.77E-08 write d3plot file            02/13/26 03:56:56
    2726 t 1.0398E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:56
    2832 t 1.0798E-04 dt 3.77E-08 write d3plot file            02/13/26 03:56:56
    2938 t 1.1198E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3044 t 1.1599E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3150 t 1.1999E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3256 t 1.2400E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3361 t 1.2797E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    3467 t 1.3199E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    3573 t 1.3600E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3678 t 1.3997E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    3784 t 1.4398E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    3890 t 1.4800E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    3995 t 1.5197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4101 t 1.5598E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4207 t 1.6000E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    4312 t 1.6397E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4418 t 1.6798E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4524 t 1.7200E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4629 t 1.7597E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4735 t 1.7999E-04 dt 3.78E-08 write d3plot file            02/13/26 03:56:56
    4841 t 1.8400E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    4946 t 1.8797E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    5000 t 1.9002E-04 dt 3.79E-08 flush i/o buffers            02/13/26 03:56:56
    5052 t 1.9199E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    5157 t 1.9596E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56
    5263 t 1.9998E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56

 *** termination time reached ***
    5263 t 2.0001E-04 dt 3.79E-08 write d3dump01 file          02/13/26 03:56:56
    5263 t 2.0001E-04 dt 3.79E-08 flush i/o buffers            02/13/26 03:56:56
    5263 t 2.0001E-04 dt 3.79E-08 write d3plot file            02/13/26 03:56:56

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:56

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.3682E-02    0.20     1.3710E-02    0.12
    KW Reading ......... 3.2516E-03    0.05     3.2520E-03    0.03
    KW Writing ......... 8.4171E-04    0.01     8.4150E-04    0.01
  MPP Decomposition .... 1.9747E-02    0.29     2.0657E-02    0.18
    Init Proc .......... 1.0686E-02    0.16     1.1334E-02    0.10
    Decomposition ...... 1.8511E-03    0.03     1.8505E-03    0.02
    Translation ........ 7.1817E-03    0.11     7.4420E-03    0.06
  Initialization ....... 5.1530E+00   76.96     1.0227E+01   86.86
    Init Proc Phase 1 .. 7.1053E-03    0.11     7.6235E-03    0.06
    Init Proc Phase 2 .. 2.0770E-03    0.03     2.8245E-03    0.02
  Init solver .......... 3.1080E-04    0.00     3.1150E-04    0.00
  Element processing ... 4.5097E-01    6.73     4.5081E-01    3.83
    Solids ............. 3.1391E-01    4.69     3.1286E-01    2.66
    Shells ............. 8.0797E-02    1.21     8.0739E-02    0.69
    E Other ............ 1.5818E-02    0.24     1.5961E-02    0.14
  Binary databases ..... 6.9165E-02    1.03     6.9381E-02    0.59
  ASCII database ....... 4.4434E-01    6.64     4.4361E-01    3.77
  Contact algorithm .... 2.0887E-01    3.12     2.0882E-01    1.77
    Interf. ID         1 1.5127E-01    2.26     1.5093E-01    1.28
  Rigid Bodies ......... 8.9920E-03    0.13     8.9155E-03    0.08
  Time step size ....... 2.9419E-02    0.44     2.9200E-02    0.25
  Group force file ..... 4.6679E-03    0.07     5.0545E-03    0.04
  Others ............... 5.0902E-02    0.76     5.0925E-02    0.43
    Force Sharing ...... 2.9200E-02    0.44     2.8953E-02    0.25
  Misc. 1 .............. 1.3930E-01    2.08     1.4224E-01    1.21
    Scale Masses ....... 3.9298E-03    0.06     3.9950E-03    0.03
    Force Constraints .. 3.9361E-03    0.06     3.9460E-03    0.03
    Force to Accel ..... 1.1495E-02    0.17     1.1457E-02    0.10
    Constraint Sharing . 4.4242E-03    0.07     4.5050E-03    0.04
    Update RB nodes .... 4.3302E-03    0.06     4.3955E-03    0.04
  Misc. 2 .............. 2.7463E-02    0.41     2.7103E-02    0.23
  Misc. 3 .............. 5.0657E-02    0.76     5.1291E-02    0.44
  Misc. 4 .............. 2.4605E-02    0.37     2.4902E-02    0.21
    Timestep Init ...... 7.4856E-03    0.11     7.4430E-03    0.06
    Apply Loads ........ 8.5692E-03    0.13     8.5225E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.6961E+00  100.00     1.1773E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5263
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1221.276 nanoseconds
 Clock time per zone cycle=        280.660 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   99dbea00cbfc                              0.24423   1.6400E+00
  #       1   99dbea00cbfc                              1.75577   1.1790E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3430E+01


 Start time   02/13/2026 03:56:55
 End time     02/13/2026 03:56:56
 Elapsed time       1 second  for    5263 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:56:56
Iteration 14 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
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 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:56:58
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 123875b4c585                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 123875b4c585-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61961

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:57:07

                                                               02/13/26 03:57:07
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:57:07

 Performing Decomposition -- Phase 1                           02/13/26 03:57:07

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:57:07
 Performing Decomposition -- Phase 3                           02/13/26 03:57:07

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     6.869E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:57:07
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:57:07
 cpu time per zone cycle............       174 nanoseconds
 average cpu time per zone cycle....       776 nanoseconds
 average clock time per zone cycle..       884 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        13 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:07
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:07
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:07
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:07
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:08
    1987 t 7.5997E-05 dt 3.81E-08 write d3plot file            02/13/26 03:57:08
    2092 t 8.0000E-05 dt 3.81E-08 write d3plot file            02/13/26 03:57:08
    2197 t 8.3991E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:08
    2302 t 8.7974E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2408 t 9.1984E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2514 t 9.5993E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2620 t 9.9997E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2725 t 1.0396E-04 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2831 t 1.0797E-04 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    2937 t 1.1198E-04 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    3043 t 1.1598E-04 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    3149 t 1.2000E-04 dt 3.78E-08 write d3plot file            02/13/26 03:57:08
    3254 t 1.2397E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3360 t 1.2799E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3465 t 1.3197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3571 t 1.3599E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3676 t 1.3997E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3782 t 1.4399E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3887 t 1.4797E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    3993 t 1.5199E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:08
    4098 t 1.5597E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4204 t 1.5998E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4309 t 1.6397E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4415 t 1.6798E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4520 t 1.7196E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4626 t 1.7598E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4732 t 1.8000E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4837 t 1.8398E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    4943 t 1.8800E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    5000 t 1.9016E-04 dt 3.79E-08 flush i/o buffers            02/13/26 03:57:09
    5048 t 1.9198E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    5154 t 1.9600E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09
    5259 t 1.9998E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09

 *** termination time reached ***
    5259 t 2.0002E-04 dt 3.79E-08 write d3dump01 file          02/13/26 03:57:09
    5259 t 2.0002E-04 dt 3.79E-08 flush i/o buffers            02/13/26 03:57:09
    5259 t 2.0002E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:09

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:09

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4238E-02    0.23     1.4270E-02    0.13
    KW Reading ......... 3.2780E-03    0.05     3.2780E-03    0.03
    KW Writing ......... 8.4371E-04    0.01     8.4400E-04    0.01
  MPP Decomposition .... 1.9240E-02    0.31     2.0005E-02    0.18
    Init Proc .......... 1.0510E-02    0.17     1.1048E-02    0.10
    Decomposition ...... 1.7684E-03    0.03     1.7680E-03    0.02
    Translation ........ 6.9345E-03    0.11     7.1610E-03    0.07
  Initialization ....... 4.7248E+00   75.46     9.3707E+00   85.89
    Init Proc Phase 1 .. 7.0995E-03    0.11     7.8800E-03    0.07
    Init Proc Phase 2 .. 1.9035E-03    0.03     2.6225E-03    0.02
  Init solver .......... 2.6452E-04    0.00     2.6500E-04    0.00
  Element processing ... 4.4663E-01    7.13     4.4644E-01    4.09
    Solids ............. 3.0974E-01    4.95     3.0867E-01    2.83
    Shells ............. 8.0873E-02    1.29     8.0921E-02    0.74
    E Other ............ 1.5597E-02    0.25     1.5777E-02    0.14
  Binary databases ..... 6.7981E-02    1.09     6.8257E-02    0.63
  ASCII database ....... 4.4569E-01    7.12     4.4492E-01    4.08
  Contact algorithm .... 2.0823E-01    3.33     2.0819E-01    1.91
    Interf. ID         1 1.5031E-01    2.40     1.5000E-01    1.37
  Rigid Bodies ......... 8.8576E-03    0.14     8.6825E-03    0.08
  Time step size ....... 2.9745E-02    0.48     2.9534E-02    0.27
  Group force file ..... 4.7742E-03    0.08     5.0545E-03    0.05
  Others ............... 5.0306E-02    0.80     5.0375E-02    0.46
    Force Sharing ...... 2.8731E-02    0.46     2.8533E-02    0.26
  Misc. 1 .............. 1.3881E-01    2.22     1.4189E-01    1.30
    Scale Masses ....... 3.9228E-03    0.06     3.9450E-03    0.04
    Force Constraints .. 3.9865E-03    0.06     3.9775E-03    0.04
    Force to Accel ..... 1.1423E-02    0.18     1.1365E-02    0.10
    Constraint Sharing . 4.3109E-03    0.07     4.4085E-03    0.04
    Update RB nodes .... 4.3871E-03    0.07     4.4835E-03    0.04
  Misc. 2 .............. 2.7700E-02    0.44     2.7403E-02    0.25
  Misc. 3 .............. 4.9184E-02    0.79     4.9716E-02    0.46
  Misc. 4 .............. 2.4547E-02    0.39     2.4875E-02    0.23
    Timestep Init ...... 7.5271E-03    0.12     7.4370E-03    0.07
    Apply Loads ........ 8.5514E-03    0.14     8.4860E-03    0.08
  ----------------------------------------------------------------
  T o t a l s            6.2610E+00  100.00     1.0911E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5259
 Total CPU time     =         6 seconds (   0 hours  0 minutes  6 seconds)
 CPU time per zone cycle  =       1141.494 nanoseconds
 Clock time per zone cycle=        279.580 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   123875b4c585                              0.25955   1.6300E+00
  #       1   123875b4c585                              1.74045   1.0930E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.2560E+01


 Start time   02/13/2026 03:57:07
 End time     02/13/2026 03:57:09
 Elapsed time       2 seconds for    5259 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:09
Iteration 15 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:57:12
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 5bd5a8644f47                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 5bd5a8644f47-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61964

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:57:22

                                                               02/13/26 03:57:22
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:57:22

 Performing Decomposition -- Phase 1                           02/13/26 03:57:22

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:57:22
 Performing Decomposition -- Phase 3                           02/13/26 03:57:22

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     7.132E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:57:22
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
 cpu time per zone cycle............       177 nanoseconds
 average cpu time per zone cycle....       794 nanoseconds
 average clock time per zone cycle..       880 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:22
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:57:22
    2092 t 8.0000E-05 dt 3.81E-08 write d3plot file            02/13/26 03:57:22
    2197 t 8.3992E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:22
    2302 t 8.7976E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    2408 t 9.1991E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    2513 t 9.5966E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:23
    2619 t 9.9977E-05 dt 3.78E-08 write d3plot file            02/13/26 03:57:23
    2725 t 1.0399E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    2830 t 1.0797E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    2936 t 1.1198E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3042 t 1.1600E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3147 t 1.1998E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3252 t 1.2396E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    3358 t 1.2799E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3463 t 1.3197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3569 t 1.3599E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    3674 t 1.3998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    3779 t 1.4397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    3885 t 1.4799E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    3990 t 1.5197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    4096 t 1.5599E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    4201 t 1.5998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    4306 t 1.6397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    4412 t 1.6799E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    4517 t 1.7197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    4623 t 1.7600E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    4728 t 1.7998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    4833 t 1.8397E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    4939 t 1.8799E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    5000 t 1.9030E-04 dt 3.79E-08 flush i/o buffers            02/13/26 03:57:23
    5044 t 1.9197E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:23
    5150 t 1.9600E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23
    5255 t 1.9998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23

 *** termination time reached ***
    5255 t 2.0002E-04 dt 3.80E-08 write d3dump01 file          02/13/26 03:57:23
    5255 t 2.0002E-04 dt 3.80E-08 flush i/o buffers            02/13/26 03:57:23
    5255 t 2.0002E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:23

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:23

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4078E-02    0.21     1.4106E-02    0.12
    KW Reading ......... 3.2500E-03    0.05     3.2505E-03    0.03
    KW Writing ......... 8.5528E-04    0.01     8.5550E-04    0.01
  MPP Decomposition .... 1.9579E-02    0.29     2.0390E-02    0.17
    Init Proc .......... 1.0681E-02    0.16     1.1269E-02    0.10
    Decomposition ...... 1.8007E-03    0.03     1.8005E-03    0.02
    Translation ........ 7.0695E-03    0.10     7.2925E-03    0.06
  Initialization ....... 5.1992E+00   77.17     1.0319E+01   87.00
    Init Proc Phase 1 .. 7.2272E-03    0.11     7.7195E-03    0.07
    Init Proc Phase 2 .. 1.9929E-03    0.03     2.5840E-03    0.02
  Init solver .......... 2.7355E-04    0.00     2.7350E-04    0.00
  Element processing ... 4.4998E-01    6.68     4.4971E-01    3.79
    Solids ............. 3.1309E-01    4.65     3.1212E-01    2.63
    Shells ............. 8.0155E-02    1.19     8.0078E-02    0.68
    E Other ............ 1.5903E-02    0.24     1.5964E-02    0.13
  Binary databases ..... 6.6418E-02    0.99     6.6680E-02    0.56
  ASCII database ....... 4.4556E-01    6.61     4.4490E-01    3.75
  Contact algorithm .... 2.0805E-01    3.09     2.0794E-01    1.75
    Interf. ID         1 1.5012E-01    2.23     1.4978E-01    1.26
  Rigid Bodies ......... 8.7841E-03    0.13     8.7175E-03    0.07
  Time step size ....... 2.8375E-02    0.42     2.8242E-02    0.24
  Group force file ..... 4.7644E-03    0.07     5.1960E-03    0.04
  Others ............... 5.1104E-02    0.76     5.1210E-02    0.43
    Force Sharing ...... 2.9150E-02    0.43     2.8966E-02    0.24
  Misc. 1 .............. 1.4002E-01    2.08     1.4291E-01    1.20
    Scale Masses ....... 3.9728E-03    0.06     4.0290E-03    0.03
    Force Constraints .. 3.9860E-03    0.06     3.9405E-03    0.03
    Force to Accel ..... 1.1520E-02    0.17     1.1456E-02    0.10
    Constraint Sharing . 4.3537E-03    0.06     4.3960E-03    0.04
    Update RB nodes .... 4.3816E-03    0.07     4.4055E-03    0.04
  Misc. 2 .............. 2.8037E-02    0.42     2.7608E-02    0.23
  Misc. 3 .............. 4.7879E-02    0.71     4.8555E-02    0.41
  Misc. 4 .............. 2.4841E-02    0.37     2.5121E-02    0.21
    Timestep Init ...... 7.5392E-03    0.11     7.5995E-03    0.06
    Apply Loads ........ 8.7127E-03    0.13     8.6825E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7370E+00  100.00     1.1861E+01  100.00

 Problem time       =    2.0002E-04
 Problem cycle      =      5255
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1230.737 nanoseconds
 Clock time per zone cycle=        280.064 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   5bd5a8644f47                              0.24278   1.6400E+00
  #       1   5bd5a8644f47                              1.75722   1.1870E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3510E+01


 Start time   02/13/2026 03:57:22
 End time     02/13/2026 03:57:23
 Elapsed time       1 second  for    5255 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:23
Iteration 16 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:57:26
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 1fffb99b5a9d                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 1fffb99b5a9d-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61963

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:57:36

                                                               02/13/26 03:57:36
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:57:36

 Performing Decomposition -- Phase 1                           02/13/26 03:57:36

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:57:36
 Performing Decomposition -- Phase 3                           02/13/26 03:57:36

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     7.528E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:57:36
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:57:36
 cpu time per zone cycle............       175 nanoseconds
 average cpu time per zone cycle....       796 nanoseconds
 average clock time per zone cycle..       902 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:36
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:36
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:36
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:36
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:37
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:57:37
    2091 t 7.9962E-05 dt 3.81E-08 write d3plot file            02/13/26 03:57:37
    2197 t 8.3994E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    2302 t 8.7982E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2407 t 9.1963E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2513 t 9.5982E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2618 t 9.9962E-05 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2724 t 1.0398E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2829 t 1.0797E-04 dt 3.79E-08 write d3plot file            02/13/26 03:57:37
    2935 t 1.1199E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3040 t 1.1597E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3145 t 1.1996E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3251 t 1.2399E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3356 t 1.2798E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3461 t 1.3197E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3566 t 1.3596E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3672 t 1.3999E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3777 t 1.4398E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3882 t 1.4797E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    3988 t 1.5200E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:37
    4093 t 1.5599E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4198 t 1.5998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4303 t 1.6397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4409 t 1.6800E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4514 t 1.7199E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4619 t 1.7598E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4724 t 1.7997E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4830 t 1.8400E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    4935 t 1.8799E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    5000 t 1.9046E-04 dt 3.80E-08 flush i/o buffers            02/13/26 03:57:38
    5040 t 1.9198E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    5145 t 1.9597E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38
    5251 t 2.0000E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38

 *** termination time reached ***
    5251 t 2.0004E-04 dt 3.80E-08 write d3dump01 file          02/13/26 03:57:38
    5251 t 2.0004E-04 dt 3.80E-08 flush i/o buffers            02/13/26 03:57:38
    5251 t 2.0004E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:38

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:38

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4106E-02    0.21     1.4134E-02    0.12
    KW Reading ......... 3.2602E-03    0.05     3.2605E-03    0.03
    KW Writing ......... 8.5525E-04    0.01     8.5500E-04    0.01
  MPP Decomposition .... 1.9601E-02    0.29     2.0500E-02    0.17
    Init Proc .......... 1.0582E-02    0.16     1.1174E-02    0.09
    Decomposition ...... 1.7923E-03    0.03     1.7920E-03    0.02
    Translation ........ 7.1975E-03    0.11     7.5035E-03    0.06
  Initialization ....... 5.1861E+00   77.21     1.0293E+01   87.03
    Init Proc Phase 1 .. 7.1672E-03    0.11     7.6015E-03    0.06
    Init Proc Phase 2 .. 2.0155E-03    0.03     2.6145E-03    0.02
  Init solver .......... 2.9634E-04    0.00     2.9700E-04    0.00
  Element processing ... 4.4842E-01    6.68     4.4822E-01    3.79
    Solids ............. 3.1201E-01    4.65     3.1102E-01    2.63
    Shells ............. 8.0157E-02    1.19     8.0135E-02    0.68
    E Other ............ 1.5484E-02    0.23     1.5653E-02    0.13
  Binary databases ..... 6.7629E-02    1.01     6.7830E-02    0.57
  ASCII database ....... 4.4291E-01    6.59     4.4223E-01    3.74
  Contact algorithm .... 2.0667E-01    3.08     2.0667E-01    1.75
    Interf. ID         1 1.4898E-01    2.22     1.4871E-01    1.26
  Rigid Bodies ......... 8.7325E-03    0.13     8.6760E-03    0.07
  Time step size ....... 2.7983E-02    0.42     2.7785E-02    0.23
  Group force file ..... 4.5970E-03    0.07     4.9695E-03    0.04
  Others ............... 5.0290E-02    0.75     5.0246E-02    0.42
    Force Sharing ...... 2.8761E-02    0.43     2.8542E-02    0.24
  Misc. 1 .............. 1.3891E-01    2.07     1.4187E-01    1.20
    Scale Masses ....... 3.9231E-03    0.06     3.9960E-03    0.03
    Force Constraints .. 3.9977E-03    0.06     4.0270E-03    0.03
    Force to Accel ..... 1.1408E-02    0.17     1.1336E-02    0.10
    Constraint Sharing . 4.3051E-03    0.06     4.3830E-03    0.04
    Update RB nodes .... 4.2692E-03    0.06     4.3455E-03    0.04
  Misc. 2 .............. 2.7960E-02    0.42     2.7597E-02    0.23
  Misc. 3 .............. 4.8074E-02    0.72     4.8689E-02    0.41
  Misc. 4 .............. 2.4218E-02    0.36     2.4536E-02    0.21
    Timestep Init ...... 7.4369E-03    0.11     7.3985E-03    0.06
    Apply Loads ........ 8.3879E-03    0.12     8.2930E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7165E+00  100.00     1.1827E+01  100.00

 Problem time       =    2.0004E-04
 Problem cycle      =      5251
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1227.838 nanoseconds
 Clock time per zone cycle=        278.892 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   1fffb99b5a9d                              0.24202   1.6300E+00
  #       1   1fffb99b5a9d                              1.75798   1.1840E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3470E+01


 Start time   02/13/2026 03:57:36
 End time     02/13/2026 03:57:38
 Elapsed time       2 seconds for    5251 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:38
Iteration 17 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
 *                                                             *
 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
 * Ansys is a registered trademark of ANSYS, Inc. or its       *
 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
 * compliance with exporting laws, warranties, disclaimers,    *
 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
 * agreement.                                                  *
 *                                                             *
 * ANSYS, Inc. is a UL registered                              *
 * ISO 9001:2015 company.                                      *
 *                                                             *
 ***************************************************************
 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
 *                                                             *
 * For U.S. Government users, except as specifically granted   *
 * by the ANSYS, Inc. software license agreement, the use,     *
 * duplication, or disclosure by the United States Government  *
 * is subject to restrictions stated in the ANSYS, Inc.        *
 * software license agreement and FAR 12.212 (for non-DOD      *
 * licenses).                                                  *
 *                                                             *
 ***************************************************************

      Date: 02/13/2026      Time: 03:57:40
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : a3d9d2007963                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: a3d9d2007963-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61944

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:57:51

                                                               02/13/26 03:57:51
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:57:51

 Performing Decomposition -- Phase 1                           02/13/26 03:57:51

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:57:51
 Performing Decomposition -- Phase 3                           02/13/26 03:57:51

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     7.925E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:57:51
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
 cpu time per zone cycle............       180 nanoseconds
 average cpu time per zone cycle....       804 nanoseconds
 average clock time per zone cycle..       899 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:57:51
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:57:51
    2091 t 7.9963E-05 dt 3.81E-08 write d3plot file            02/13/26 03:57:51
    2197 t 8.3997E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:51
    2302 t 8.7987E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:51
    2407 t 9.1973E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:51
    2513 t 9.5997E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:51
    2618 t 9.9983E-05 dt 3.80E-08 write d3plot file            02/13/26 03:57:51
    2723 t 1.0397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    2829 t 1.0800E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    2934 t 1.1199E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3039 t 1.1598E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3144 t 1.1997E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3249 t 1.2397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3355 t 1.2800E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3460 t 1.3199E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3565 t 1.3599E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3670 t 1.3998E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3775 t 1.4397E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3880 t 1.4797E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    3985 t 1.5196E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4091 t 1.5600E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4196 t 1.5999E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4301 t 1.6398E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4406 t 1.6798E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4511 t 1.7197E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4616 t 1.7597E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4722 t 1.8000E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4827 t 1.8399E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    4932 t 1.8799E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    5000 t 1.9057E-04 dt 3.80E-08 flush i/o buffers            02/13/26 03:57:52
    5037 t 1.9198E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    5142 t 1.9597E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52
    5247 t 1.9997E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52

 *** termination time reached ***
    5247 t 2.0001E-04 dt 3.80E-08 write d3dump01 file          02/13/26 03:57:52
    5247 t 2.0001E-04 dt 3.80E-08 flush i/o buffers            02/13/26 03:57:52
    5247 t 2.0001E-04 dt 3.80E-08 write d3plot file            02/13/26 03:57:52

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:52

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4330E-02    0.21     1.4368E-02    0.12
    KW Reading ......... 3.2498E-03    0.05     3.2505E-03    0.03
    KW Writing ......... 8.6000E-04    0.01     8.6050E-04    0.01
  MPP Decomposition .... 2.0331E-02    0.30     2.1127E-02    0.18
    Init Proc .......... 1.0772E-02    0.16     1.1303E-02    0.10
    Decomposition ...... 2.4611E-03    0.04     2.4610E-03    0.02
    Translation ........ 7.0694E-03    0.11     7.3335E-03    0.06
  Initialization ....... 5.1629E+00   76.96     1.0247E+01   86.86
    Init Proc Phase 1 .. 7.0838E-03    0.11     7.4580E-03    0.06
    Init Proc Phase 2 .. 2.0303E-03    0.03     2.6175E-03    0.02
  Init solver .......... 2.7925E-04    0.00     2.7950E-04    0.00
  Element processing ... 4.5148E-01    6.73     4.5124E-01    3.83
    Solids ............. 3.1593E-01    4.71     3.1488E-01    2.67
    Shells ............. 7.9410E-02    1.18     7.9387E-02    0.67
    E Other ............ 1.5535E-02    0.23     1.5621E-02    0.13
  Binary databases ..... 7.2846E-02    1.09     7.3102E-02    0.62
  ASCII database ....... 4.4455E-01    6.63     4.4373E-01    3.76
  Contact algorithm .... 2.0637E-01    3.08     2.0621E-01    1.75
    Interf. ID         1 1.4872E-01    2.22     1.4843E-01    1.26
  Rigid Bodies ......... 8.7323E-03    0.13     8.6715E-03    0.07
  Time step size ....... 2.9399E-02    0.44     2.9218E-02    0.25
  Group force file ..... 4.6984E-03    0.07     4.9975E-03    0.04
  Others ............... 5.0936E-02    0.76     5.1088E-02    0.43
    Force Sharing ...... 2.9170E-02    0.43     2.9006E-02    0.25
  Misc. 1 .............. 1.3978E-01    2.08     1.4282E-01    1.21
    Scale Masses ....... 3.9030E-03    0.06     3.9815E-03    0.03
    Force Constraints .. 4.0075E-03    0.06     3.9695E-03    0.03
    Force to Accel ..... 1.1435E-02    0.17     1.1430E-02    0.10
    Constraint Sharing . 4.3460E-03    0.06     4.4800E-03    0.04
    Update RB nodes .... 4.2925E-03    0.06     4.3620E-03    0.04
  Misc. 2 .............. 2.7313E-02    0.41     2.7020E-02    0.23
  Misc. 3 .............. 5.0368E-02    0.75     5.0935E-02    0.43
  Misc. 4 .............. 2.4430E-02    0.36     2.4704E-02    0.21
    Timestep Init ...... 7.4661E-03    0.11     7.4225E-03    0.06
    Apply Loads ........ 8.5146E-03    0.13     8.4880E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7088E+00  100.00     1.1797E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5247
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1227.300 nanoseconds
 Clock time per zone cycle=        281.785 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   a3d9d2007963                              0.24499   1.6500E+00
  #       1   a3d9d2007963                              1.75501   1.1820E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3470E+01


 Start time   02/13/2026 03:57:51
 End time     02/13/2026 03:57:52
 Elapsed time       1 second  for    5247 cycles using     2 MPP procs
             (      0 hour   0 minute   1 second )

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:57:52
Iteration 18 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())
 License option : check ansys licenses only


 ***************************************************************
 *            ANSYS LEGAL NOTICES                              *
 ***************************************************************
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 * Copyright 1971-2023 ANSYS, Inc.  All rights reserved.       *
 * Unauthorized use, distribution or duplication is            *
 * prohibited.                                                 *
 *                                                             *
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 * subsidiaries in the United States or other countries.       *
 * See the ANSYS, Inc. online documentation or the ANSYS, Inc. *
 * documentation CD or online help for the complete Legal      *
 * Notice.                                                     *
 *                                                             *
 ***************************************************************
 *                                                             *
 * THIS ANSYS SOFTWARE PRODUCT AND PROGRAM DOCUMENTATION       *
 * INCLUDE TRADE SECRETS AND CONFIDENTIAL AND PROPRIETARY      *
 * PRODUCTS OF ANSYS, INC., ITS SUBSIDIARIES, OR LICENSORS.    *
 * The software products and documentation are furnished by    *
 * ANSYS, Inc. or its subsidiaries under a software license    *
 * agreement that contains provisions concerning               *
 * non-disclosure, copying, length and nature of use,          *
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 * limitations of liability, and remedies, and other           *
 * provisions.  The software products and documentation may be *
 * used, disclosed, transferred, or copied only in accordance  *
 * with the terms and conditions of that software license      *
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 *                                                             *
 * This product is subject to U.S. laws governing export and   *
 * re-export.                                                  *
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      Date: 02/13/2026      Time: 03:57:55
      ___________________________________________________
     |                                                   |
     |  LS-DYNA, A Program for Nonlinear Dynamic         |
     |  Analysis of Structures in Three Dimensions       |
     |  Date    : 10/16/2023    Time: 19:29:09           |
     |  Version : mpp s R14                              |
     |  Revision: R14.1-205-geb5348f751                  |
     |  AnLicVer: 2024 R1 (20231025+2752148)             |
     |                                                   |
     |  Features enabled in this version:                |
     |    Distributed Memory Parallel                    |
     |    FFTW (multi-dimensional FFTW Library)          |
     |    ANSYSLIC enabled                               |
     |                                                   |
     |  Platform   : Intel-MPI 2018 Xeon64               |
     |  OS Level   : Linux CentOS 7.9 uum                |
     |  Compiler   : Intel Fortran Compiler 19.0 SSE2    |
     |  Hostname   : 5569ea52cd85                        |
     |  Precision  : Single precision (I4R4)             |
     |                                                   |
     |  Unauthorized use infringes Ansys Inc. copyrights |
     |___________________________________________________|

[license/info] Successfully checked out 2 of "dyna_solver_core".
[license/info] --> Checkout ID: 5569ea52cd85-root-23-000004 (days left: 340)
[license/info] --> Customer ID: 0
[license/info] Successfully started "LSDYNA (Core-based License)".

 Executing with ANSYS license

 Command line options: i=input.k
                       memory=2m

 Input file: input.k

 The native file format       : 32-bit small endian
 Memory size from command line:     2000000,            0
 Memory size from command line:     2000000,      2000000

 Memory for the head node
 Memory installed (MB)        :        64298
 Memory available (MB)        :        61947

 on UNIX computers note the following change:

 ctrl-c interrupts ls-dyna and prompts for a sense  switch.
 type the desired sense switch: sw1., sw2., etc. to continue
 the execution.  ls-dyna will respond as explained in the users manual

    type                      response
   -----   ------------------------------------------------------------
   quit    ls-dyna terminates.
   stop    ls-dyna terminates.
   sw1.    a restart file is written and ls-dyna terminates.
   sw2.    ls-dyna responds with time and cycle numbers.
   sw3.    a restart file is written and ls-dyna continues calculations.
   sw4.    a plot state is written and ls-dyna continues calculations.
   sw5.    ls-dyna enters interactive graphics phase.
   swa.    ls-dyna flushes all output i/o buffers.
   swb.    a dynain is written and ls-dyna continues calculations.
   swc.    a restart and dynain are written and ls-dyna continues calculations.
   swd.    a restart and dynain are written and ls-dyna terminates.
   swe.    stop dynamic relaxation just as though convergence
   endtime=time change the termination time
   lpri    toggle implicit lin. alg. solver output on/off.
   nlpr    toggle implicit nonlinear solver output on/off.
   iter    toggle implicit output to d3iter database on/off.
   prof    output timing data to prof.out and continue.
   conv    force implicit nonlinear convergence for current time step.
   ttrm    terminate implicit time step, reduce time step, retry time step.
   rtrm    terminate implicit at end of current time step.


 ********  notice  ********  notice  ********  notice  ********
 *                                                            *
 * This is the LS-DYNA Finite Element code.                   *
 *                                                            *
 * Neither LST nor the authors assume any responsibility for  *
 * the validity, accuracy, or applicability of any results    *
 * obtained from this system. Users must verify their own     *
 * results.                                                   *
 *                                                            *
 * LST endeavors to make the LS-DYNA code as complete,        *
 * accurate and easy to use as possible.                      *
 * Suggestions and comments are welcomed.  Please report any  *
 * errors encountered in either the documentation or results  *
 * immediately to LST through your site focus.                *
 *                                                            *
 * Copyright (C) 1990-2021                                    *
 * by Livermore Software Technology, LLC                      *
 * All rights reserved                                        *
 *                                                            *
 ********  notice  ********  notice  ********  notice  ********

 Beginning of keyword reader                                   02/13/26 03:58:05

                                                               02/13/26 03:58:05
 Open include file: bar_impact_mesh.k


 Memory required to process keyword     :     320290
 Additional dynamic memory required     :     362814


 MPP execution with       2 procs

 Initial reading of file                                       02/13/26 03:58:05

 Performing Decomposition -- Phase 1                           02/13/26 03:58:05

 Performing Recursive Coordinate Bisection (RCB)

 Memory required for decomposition      :      20096
 Additional dynamic memory required     :     365185


 Performing Decomposition -- Phase 2                           02/13/26 03:58:05
 Performing Decomposition -- Phase 3                           02/13/26 03:58:05

 input of data is completed

 initial kinetic energy = 0.11118394E+04

 The LS-DYNA time step size should not exceed     8.321E-08
 to avoid contact instabilities.  If the step size is
 bigger then scale the penalty of the offending surface.

 The following binary output files are being created,
 and contain data equivalent to the indicated ascii output files
   binout0000: (on processor       0)
    glstat
    matsum
   binout0001: (on processor       1)
    nodout

 Memory required to begin solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1254K on processor     0
          Maximum   1263K on processor     1
          Average   1259K

 Total allocated memory
          Minimum   1264K on processor     0
          Maximum   1271K on processor     1
          Average   1267K

 initialization completed
 Initial penetration for SI          1   0.00000 (tol=   0.00186)
       1 t 0.0000E+00 dt 3.83E-08 flush i/o buffers            02/13/26 03:58:05
       1 t 0.0000E+00 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
 cpu time per zone cycle............       170 nanoseconds
 average cpu time per zone cycle....       778 nanoseconds
 average clock time per zone cycle..       861 nanoseconds

 estimated total cpu time          =         4 sec (       0 hrs  0 mins)
 estimated cpu time to complete    =         4 sec (       0 hrs  0 mins)
 estimated total clock time        =        14 sec (       0 hrs  0 mins)
 estimated clock time to complete  =         4 sec (       0 hrs  0 mins)
 termination time                  = 2.000E-04
     105 t 3.9799E-06 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     210 t 7.9980E-06 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     314 t 1.1978E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     419 t 1.5996E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     523 t 1.9976E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     628 t 2.3994E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     732 t 2.7974E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     837 t 3.1992E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
     941 t 3.5972E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
    1046 t 3.9990E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:05
    1150 t 4.3970E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1255 t 4.7988E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1359 t 5.1968E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1464 t 5.5986E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1568 t 5.9966E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1673 t 6.3984E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1777 t 6.7964E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1882 t 7.1982E-05 dt 3.83E-08 write d3plot file            02/13/26 03:58:06
    1987 t 7.5996E-05 dt 3.82E-08 write d3plot file            02/13/26 03:58:06
    2091 t 7.9964E-05 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    2196 t 8.3962E-05 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    2302 t 8.7993E-05 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2407 t 9.1983E-05 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2512 t 9.5974E-05 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2617 t 9.9966E-05 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2723 t 1.0400E-04 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2828 t 1.0799E-04 dt 3.80E-08 write d3plot file            02/13/26 03:58:06
    2933 t 1.1199E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3038 t 1.1598E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3143 t 1.1998E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3248 t 1.2398E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3353 t 1.2798E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3458 t 1.3198E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3563 t 1.3598E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3668 t 1.3998E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3773 t 1.4398E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3878 t 1.4798E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    3983 t 1.5198E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4088 t 1.5598E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4193 t 1.5997E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4298 t 1.6397E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4403 t 1.6797E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4508 t 1.7197E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:06
    4613 t 1.7597E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    4718 t 1.7997E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    4823 t 1.8397E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    4928 t 1.8797E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    5000 t 1.9071E-04 dt 3.81E-08 flush i/o buffers            02/13/26 03:58:07
    5033 t 1.9197E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    5138 t 1.9597E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07
    5243 t 1.9997E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07

 *** termination time reached ***
    5243 t 2.0001E-04 dt 3.81E-08 write d3dump01 file          02/13/26 03:58:07
    5243 t 2.0001E-04 dt 3.81E-08 flush i/o buffers            02/13/26 03:58:07
    5243 t 2.0001E-04 dt 3.81E-08 write d3plot file            02/13/26 03:58:07

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:58:07

 Memory required to complete solution (memory=    321K memory2=    9385)
          Minimum    7424 on processor     1
          Maximum    9385 on processor     0
          Average    8404

 Additional dynamically allocated memory
          Minimum   1263K on processor     0
          Maximum   1284K on processor     1
          Average   1274K

 Total allocated memory
          Minimum   1272K on processor     0
          Maximum   1292K on processor     1
          Average   1282K

 T i m i n g   i n f o r m a t i o n
                        CPU(seconds)   %CPU  Clock(seconds) %Clock
  ----------------------------------------------------------------
  Keyword Processing ... 1.4087E-02    0.21     1.4120E-02    0.12
    KW Reading ......... 3.2786E-03    0.05     3.2790E-03    0.03
    KW Writing ......... 8.3599E-04    0.01     8.3600E-04    0.01
  MPP Decomposition .... 2.0140E-02    0.30     2.0909E-02    0.18
    Init Proc .......... 1.0655E-02    0.16     1.1132E-02    0.09
    Decomposition ...... 2.4690E-03    0.04     2.4690E-03    0.02
    Translation ........ 6.9882E-03    0.10     7.2790E-03    0.06
  Initialization ....... 5.1940E+00   77.23     1.0309E+01   87.04
    Init Proc Phase 1 .. 7.0344E-03    0.10     7.4065E-03    0.06
    Init Proc Phase 2 .. 1.9418E-03    0.03     2.6595E-03    0.02
  Init solver .......... 2.6003E-04    0.00     2.6000E-04    0.00
  Element processing ... 4.4548E-01    6.62     4.4531E-01    3.76
    Solids ............. 3.1047E-01    4.62     3.0944E-01    2.61
    Shells ............. 7.9276E-02    1.18     7.9383E-02    0.67
    E Other ............ 1.5494E-02    0.23     1.5585E-02    0.13
  Binary databases ..... 6.5705E-02    0.98     6.5976E-02    0.56
  ASCII database ....... 4.4882E-01    6.67     4.4807E-01    3.78
  Contact algorithm .... 2.0523E-01    3.05     2.0526E-01    1.73
    Interf. ID         1 1.4887E-01    2.21     1.4849E-01    1.25
  Rigid Bodies ......... 8.7107E-03    0.13     8.6420E-03    0.07
  Time step size ....... 2.8261E-02    0.42     2.8025E-02    0.24
  Group force file ..... 4.7115E-03    0.07     5.0045E-03    0.04
  Others ............... 5.0191E-02    0.75     5.0205E-02    0.42
    Force Sharing ...... 2.8788E-02    0.43     2.8604E-02    0.24
  Misc. 1 .............. 1.3886E-01    2.06     1.4152E-01    1.19
    Scale Masses ....... 3.9662E-03    0.06     3.9965E-03    0.03
    Force Constraints .. 4.0045E-03    0.06     4.0590E-03    0.03
    Force to Accel ..... 1.1474E-02    0.17     1.1411E-02    0.10
    Constraint Sharing . 4.3165E-03    0.06     4.3130E-03    0.04
    Update RB nodes .... 4.4193E-03    0.07     4.4340E-03    0.04
  Misc. 2 .............. 2.7353E-02    0.41     2.7036E-02    0.23
  Misc. 3 .............. 4.9455E-02    0.74     5.0111E-02    0.42
  Misc. 4 .............. 2.4088E-02    0.36     2.4374E-02    0.21
    Timestep Init ...... 7.3831E-03    0.11     7.3035E-03    0.06
    Apply Loads ........ 8.3743E-03    0.12     8.3240E-03    0.07
  ----------------------------------------------------------------
  T o t a l s            6.7254E+00  100.00     1.1844E+01  100.00

 Problem time       =    2.0001E-04
 Problem cycle      =      5243
 Total CPU time     =         7 seconds (   0 hours  0 minutes  7 seconds)
 CPU time per zone cycle  =       1231.327 nanoseconds
 Clock time per zone cycle=        279.351 nanoseconds

 Parallel execution with      2 MPP proc
 NLQ used/max               120/   120

  C P U   T i m i n g   i n f o r m a t i o n

  Processor   Hostname                              CPU/Avg_CPU  CPU(seconds)
  ---------------------------------------------------------------------------
  #       0   5569ea52cd85                              0.24166   1.6300E+00
  #       1   5569ea52cd85                              1.75834   1.1860E+01
  ---------------------------------------------------------------------------
  T o t a l s                                                     1.3490E+01


 Start time   02/13/2026 03:58:05
 End time     02/13/2026 03:58:07
 Elapsed time       2 seconds for    5243 cycles using     2 MPP procs
             (      0 hour   0 minute   2 seconds)

 N o r m a l    t e r m i n a t i o n                          02/13/26 03:58:07
Iteration 19 failed: Unable to locate any Ansys installation.
Make sure the "AWP_ROOT251" environment variable is set if using ANSYS version 251.
You can also manually define the path to the ANSYS installation root folder of the version you want to use (vXXX folder):
- when starting the server with "start_local_server(ansys_path=*/vXXX)"
- or by setting it by default with the environment variable "ANSYS_DPF_PATH"
/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py:741: UserWarning: Traceback (most recent call last):
  File "/home/runner/work/pydyna/pydyna/.venv/lib/python3.13/site-packages/ansys/dpf/core/data_sources.py", line 739, in __del__
    self._deleter_func[0](self._deleter_func[1](self))
    ^^^^^^^^^^^^^^^^^^
AttributeError: 'DataSources' object has no attribute '_deleter_func'

  warnings.warn(traceback.format_exc())

Generate graphical output#

# Now plot all results
plt.figure(figsize=(8, 5))
for res in all_results:
    thickness = res["thickness"]
    time_data = res["time"]
    max_disp_data = res["max_disp"]
    color = "r" if max(max_disp_data) <= target_displacement else "b"
    label = f"Thickness {thickness:.4f}"
    plt.plot(time_data, max_disp_data, color=color, label=label)
plt.xlabel("Time (ms)")
plt.ylabel("Displacement (mm)")
plt.title("Plate Displacement vs Time for Different Thicknesses")
plt.grid(True)
plt.show()
Plate Displacement vs Time for Different Thicknesses

Total running time of the script: (4 minutes 51.728 seconds)

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