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Python Script runs with ABAQUS 2021, but job Aborts with Abaqus 2022

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psustudent

Mechanical
Oct 12, 2022
7
Hello!
I have a python script I wrote to run an ABAQUS simulation in ABAQUS 2021. My organization recently upgraded to ABAQUS 2022 and now when I submit I job from a file created from this script the job aborts. The status file does not appear to contain any helpful hints on why this is. I upgraded the python script using the ABAQUS plugin as explained on this website: but the job is still aborting.
Has anyone else run into this problem or have any advice on how to migrate a python script from ABAQUS 2021 to ABAQUS 2022?
Thanks!
 
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What about the other log files - no hints in them ? This plug-in may also be outdated. Does it have an option to convert from 2021 to 2022 or is it necessary to choose older releases when using it ?
 
It does have the option to convert from 2021 to 2022. This is all the .log file says "Analysis initiated from SIMULIA established products
Abaqus JOB Aluminum-38Deg-33mm-10p0mm-ROUNDEDAngledCT-0Deg
Abaqus 2022
Abaqus License Manager checked out the following licenses:
Abaqus/Explicit checked out 8 tokens from Flexnet server lm.ics.psu.edu.
<227 out of 300 licenses remain available>.
Begin Analysis Input File Processor
Sun Mar 26 15:28:23 2023
Run pre
Sun Mar 26 15:28:34 2023
End Analysis Input File Processor
Begin Abaqus/Explicit Packager
Sun Mar 26 15:28:34 2023
Run package
Sun Mar 26 15:28:41 2023
End Abaqus/Explicit Packager
Begin Abaqus/Explicit Analysis
Sun Mar 26 15:28:41 2023
Run explicit
/storage/icds/swst/deployed/production/20220813/apps/abaqus/2022_gcc-8.5.0/SIMULIA/EstProducts/2022/linux_a64/code/bin/SMAExternal/impi/intel64/bin/mpirun: line 103: 2503233 Floating point exception(core dumped) mpiexec.hydra "$@" 0<&0
Sun Mar 26 15:28:41 2023
Abaqus Error: Abaqus/Explicit Analysis exited with an error - Please see the
status file for possible error messages if the file exists.
Abaqus/Analysis exited with errors"

The status file contains the following:
Abaqus/Explicit 2022 DATE 26-Mar-2023 TIME 15:41:14
-------------------------------------------------------------------------------
DOMAIN DECOMPOSITION INFORMATION
-------------------------------------------------------------------------------


DOMAIN 1 HAS 75363 ELEMENTS AND 38123 NODES with WEIGHT 25.000

DOMAIN 2 HAS 75364 ELEMENTS AND 38093 NODES with WEIGHT 25.000

DOMAIN 3 HAS 75364 ELEMENTS AND 38192 NODES with WEIGHT 25.000

DOMAIN 4 HAS 75364 ELEMENTS AND 38132 NODES with WEIGHT 25.000


-------------------------------------------------------------------------------
MODEL INFORMATION (IN GLOBAL X-Y COORDINATES)
-------------------------------------------------------------------------------

Total mass in model = 0.35845
Center of mass of model = ( 7.308215E-03, 4.262567E-03)

Moments of Inertia :
About Center of Mass About Origin
I(XX) 2.371349E-06 8.884138E-06
I(YY) 7.164375E-06 2.630902E-05
I(XY) 9.226169E-07 -1.024363E-05
I(ZZ) 9.535724E-06 3.519316E-05

-------------------------------------------------------------------------------
STABLE TIME INCREMENT INFORMATION
-------------------------------------------------------------------------------


The stable time increment estimate for each element is based on
linearization about the initial state.


Initial time increment = 4.43075E-10

Statistics for all elements:
Mean = 2.68911E-09
Standard deviation = 2.06052E-10

Most critical elements:
Element number Rank Time increment Increment ratio
(Instance name)
----------------------------------------------------------
167510 1 4.430753E-10 1.000000E+00
PART-1-1
167832 2 4.668607E-10 9.490525E-01
PART-1-1
193811 3 5.030112E-10 8.808458E-01
PART-1-1
193806 4 5.340685E-10 8.296226E-01
PART-1-1
193807 5 5.782560E-10 7.662269E-01
PART-1-1
193816 6 5.931219E-10 7.470223E-01
PART-1-1
167511 7 5.949707E-10 7.447011E-01
PART-1-1
193818 8 8.159600E-10 5.430111E-01
PART-1-1
193808 9 8.175441E-10 5.419589E-01
PART-1-1
193666 10 8.344403E-10 5.309851E-01
PART-1-1


Instance name for the most critical element will be printed if the critical
element changes or at the beginning of a new page.


 
No warnings/errors in .msg and .dat files ? Maybe updating Abaqus with fix packs could help but I would try submitting this analysis manually first, the problem might be in the simulation itself. Also, are there any subroutines involved in this case ?
 
There was not a .msg file created. The .dat file says the following:
1

Abaqus 2022 Date 26-Mar-2023 Time 15:28:24
For use by PENNSYLVANIA STATE UNIVERSITY under license from Dassault Systemes or its subsidiary.



The Abaqus Software is a product of:

Dassault Systemes SIMULIA Corp.
1301 Atwood Avenue, Suite 101W
Johnston, RI 02919, USA



The Abaqus Software is available only under license
from Dassault Systemes or its subsidiary and may be
used or reproduced only in accordance with the terms
of such license.

On machine p-ic-4001
you are authorized to run
Abaqus/Explicit until 29-Feb-2024

Your site id is: SIT00008280



For assistance or any other information you may
obtain contact information for your local office
from the world wide web at:



* * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* *
* ***************** *
* * N O T I C E * *
* ***************** *
* *
* *
* Abaqus 2022 *
* *
* BUILD ID: 2021_09_15-13.57.30 176069 *
* *
* *
* Please make sure you are using *
* release Abaqus 2022 manuals *
* plus the notes accompanying this release. *
* *
* *
* *
* *
* *
* This program may not be used for commercial purposes *
* without payment of a commercial fee. *
* *
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * *






PROCESSING PART, INSTANCE, AND ASSEMBLY INFORMATION
*******************************************************


END PROCESSING PART, INSTANCE, AND ASSEMBLY INFORMATION
***********************************************************




OPTIONS BEING PROCESSED
***************************


*Heading
*Node
*Element, type=CPE3
*Nset, nset=ASSEMBLY_PART-1-1_SET-1
*Nset, nset=ASSEMBLY_PART-1-1_SET-2
*Nset, nset=ASSEMBLY_PART-1-1_SET-3
*Nset, nset=ASSEMBLY_PART-1-1_SET-4
*Nset, nset=ASSEMBLY_PART-1-1_SET-5
*Nset, nset=ASSEMBLY_PART-1-1_SET-6
*Nset, nset=ASSEMBLY_PART-1-1_SET-7
*Nset, nset=ASSEMBLY_PART-1-1_SET-8
*Nset, nset=ASSEMBLY_PART-1-1_SET-9
*Elset, elset=ASSEMBLY_PART-1-1_SET-1
*Elset, elset=ASSEMBLY_PART-1-1_SET-2
*Elset, elset=ASSEMBLY_PART-1-1_SET-3
*Elset, elset=ASSEMBLY_PART-1-1_SET-4
*Elset, elset=ASSEMBLY_PART-1-1_SET-5
*Elset, elset=ASSEMBLY_PART-1-1_SET-6
*Elset, elset=ASSEMBLY_PART-1-1_SET-7
*Elset, elset=ASSEMBLY_PART-1-1_SET-8
*Elset, elset=ASSEMBLY_PART-1-1_SET-9
*Node
*Nset, nset="ASSEMBLY_Top Nodes"
*Nset, nset=ASSEMBLY_SET-1
*Nset, nset=ASSEMBLY_SET-10
*Nset, nset=ASSEMBLY_SET-11
*Nset, nset=ASSEMBLY_SET-12
*Nset, nset=ASSEMBLY_SET-13
*Nset, nset=ASSEMBLY_SET-14
*Nset, nset=ASSEMBLY_SET-15
*Nset, nset=ASSEMBLY_SET-16
*Nset, nset=ASSEMBLY_SET-17
*Nset, nset=ASSEMBLY_SET-18
*Nset, nset=ASSEMBLY_SET-19
*Nset, nset=ASSEMBLY_SET-2
*Nset, nset=ASSEMBLY_SET-3
*Nset, nset=ASSEMBLY_SET-4
*Nset, nset=ASSEMBLY_SET-5
*Nset, nset=ASSEMBLY_SET-6
*Nset, nset=ASSEMBLY_SET-7
*Nset, nset=ASSEMBLY_SET-8
*Nset, nset=ASSEMBLY_SET-9
*material, name=AL
*density
*elastic
*material, name=DAMP1
*damping, alpha=15625
*density
*elastic
*material, name=DAMP2
*damping, alpha=421875
*density
*elastic
*material, name=DAMP3
*damping, alpha=1953120
*density
*elastic
*material, name=DAMP4
*damping, alpha=5359380
*density
*elastic
*material, name=DAMP5
*damping, alpha=11390600
*density
*elastic
*material, name=DAMP6
*damping, alpha=20796900
*density
*elastic
*material, name=DAMP7
*damping, alpha=34328100
*density
*elastic
*material, name=DAMP8
*damping, alpha=52734400
*density
*elastic
*solidsection, elset=ASSEMBLY_PART-1-1_SET-3, material=DAMP2
*solidsection, elset=ASSEMBLY_PART-1-1_SET-4, material=DAMP3
*solidsection, elset=ASSEMBLY_PART-1-1_SET-5, material=DAMP4
*solidsection, elset=ASSEMBLY_PART-1-1_SET-6, material=DAMP5
*solidsection, elset=ASSEMBLY_PART-1-1_SET-7, material=DAMP6
*solidsection, elset=ASSEMBLY_PART-1-1_SET-8, material=DAMP7
*solidsection, elset=ASSEMBLY_PART-1-1_SET-9, material=DAMP8
*solidsection, elset=ASSEMBLY_PART-1-1_SET-1, material=AL
*solidsection, elset=ASSEMBLY_PART-1-1_SET-2, material=DAMP1
*solidsection, elset=ASSEMBLY_PART-1-1_SET-3, material=DAMP2
*solidsection, elset=ASSEMBLY_PART-1-1_SET-4, material=DAMP3
*solidsection, elset=ASSEMBLY_PART-1-1_SET-5, material=DAMP4
*solidsection, elset=ASSEMBLY_PART-1-1_SET-6, material=DAMP5
*solidsection, elset=ASSEMBLY_PART-1-1_SET-7, material=DAMP6
*solidsection, elset=ASSEMBLY_PART-1-1_SET-8, material=DAMP7
*solidsection, elset=ASSEMBLY_PART-1-1_SET-9, material=DAMP8
*solidsection, elset=ASSEMBLY_PART-1-1_SET-1, material=AL
*solidsection, elset=ASSEMBLY_PART-1-1_SET-2, material=DAMP1
*solidsection, elset=ASSEMBLY_PART-1-1_SET-3, material=DAMP2
*solidsection, elset=ASSEMBLY_PART-1-1_SET-4, material=DAMP3
*solidsection, elset=ASSEMBLY_PART-1-1_SET-5, material=DAMP4
*solidsection, elset=ASSEMBLY_PART-1-1_SET-6, material=DAMP5
*solidsection, elset=ASSEMBLY_PART-1-1_SET-7, material=DAMP6
*solidsection, elset=ASSEMBLY_PART-1-1_SET-8, material=DAMP7
*solidsection, elset=ASSEMBLY_PART-1-1_SET-9, material=DAMP8
*solidsection, elset=ASSEMBLY_PART-1-1_SET-1, material=AL
*solidsection, elset=ASSEMBLY_PART-1-1_SET-2, material=DAMP1
*amplitude, name=AMP1
*amplitude, name=AMP2
*amplitude, name=AMP3
*amplitude, name=AMP4
*amplitude, name=AMP5
*amplitude, name=AMP6
*amplitude, name=AMP7
*amplitude, name=AMP8
*amplitude, name=AMP9
*amplitude, name=AMP10
*output, field, variable=PRESELECT
*output, history, frequency=1
*Step, name=Step-1, nlgeom=YES
*Step, name=Step-1, nlgeom=YES
*dynamic, explicit
*output, field, variable=PRESELECT
*output, history, frequency=1
*nodeoutput, nset="ASSEMBLY_Top Nodes"
*endstep

***WARNING: OUTPUT REQUEST U3 IS NOT VALID SINCE IT REQUESTS OUTPUT AT A DOF
THAT IS NOT ACTIVE

***WARNING: OUTPUT REQUEST UR1 IS NOT VALID SINCE IT REQUESTS OUTPUT AT A DOF
THAT IS NOT ACTIVE

***WARNING: OUTPUT REQUEST UR2 IS NOT VALID SINCE IT REQUESTS OUTPUT AT A DOF
THAT IS NOT ACTIVE

***WARNING: OUTPUT REQUEST UR3 IS NOT VALID SINCE IT REQUESTS OUTPUT AT A DOF
THAT IS NOT ACTIVE
*Step, name=Step-1, nlgeom=YES
*dynamic, explicit
*cload, amplitude=AMP1
*cload, amplitude=AMP2
*cload, amplitude=AMP2
*cload, amplitude=AMP3
*cload, amplitude=AMP3
*cload, amplitude=AMP4
*cload, amplitude=AMP4
*cload, amplitude=AMP5
*cload, amplitude=AMP5
*cload, amplitude=AMP6
*cload, amplitude=AMP6
*cload, amplitude=AMP7
*cload, amplitude=AMP7
*cload, amplitude=AMP8
*cload, amplitude=AMP8
*cload, amplitude=AMP9
*cload, amplitude=AMP9
*cload, amplitude=AMP10
*cload, amplitude=AMP10
*endstep



P R O B L E M S I Z E


NUMBER OF ELEMENTS IS 301455
NUMBER OF NODES IS 151559
NUMBER OF NODES DEFINED BY THE USER 151559
TOTAL NUMBER OF VARIABLES IN THE MODEL 303118
(DEGREES OF FREEDOM PLUS MAX NO. OF ANY LAGRANGE MULTIPLIER
VARIABLES. INCLUDE *PRINT,SOLVE=YES TO GET THE ACTUAL NUMBER.)



END OF USER INPUT PROCESSING



JOB TIME SUMMARY
USER TIME (SEC) = 7.2100
SYSTEM TIME (SEC) = 0.33000
TOTAL CPU TIME (SEC) = 7.5400
WALLCLOCK TIME (SEC) = 10

There are no subroutines. I will try to do the simulation manually. Thank you.
 
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