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SUCCESS difference: 3.1e-15 < 1e-13 test id: 905 test name: SquareNoDynHydrologyDCSmbCoupled field: SedimentWaterHeadSubstep20
----------------finished:905-----------------------
----------------starting:906-----------------------
[Warning: paterson is outdated, please consider using cuffey instead]
no hydrology.basal_moulin_input specified: values set as zero
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0181791
Total Core solution elapsed time: 6.80382
Linear solver elapsed time: 2.96689 (44%)
Total elapsed time: 0 hrs 0 min 6 sec
SUCCESS difference: 6.6e-16 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: SedimentWaterHead2
SUCCESS difference: 2.4e-14 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: EplWaterHead2
SUCCESS difference: 1.7e-14 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: SedimentHeadResidual2
SUCCESS difference: 8.6e-16 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: SedimentHeadSubstep2
SUCCESS difference: 2.2e-14 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: EplHeadSubstep2
SUCCESS difference: 0 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: HydrologySubsteps2
SUCCESS difference: 0 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: HydrologySubTime2
SUCCESS difference: 1.4e-15 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: SedimentWaterHead3
SUCCESS difference: 1.4e-14 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: EplWaterHead3
SUCCESS difference: 7.9e-15 < 1e-13 test id: 906 test name: SquareNoDynHydrologyDCtimeadapt field: SedimentHeadResidual3
----------------finished:906-----------------------
----------------starting:1501-----------------------
[Warning: paterson is outdated, please consider using cuffey instead]
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no balancethickness.thickening_rate specified: values set as zero
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0114165
Total Core solution elapsed time: 0.0065009
Linear solver elapsed time: 0.00479727 (74%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0114327
Total Core solution elapsed time: 0.00625584
Linear solver elapsed time: 0.00470109 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0115334
Total Core solution elapsed time: 0.00608793
Linear solver elapsed time: 0.00457577 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0109343
Total Core solution elapsed time: 0.00595107
Linear solver elapsed time: 0.00446218 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0103371
Total Core solution elapsed time: 0.00657798
Linear solver elapsed time: 0.00480783 (73%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0111119
Total Core solution elapsed time: 0.00614558
Linear solver elapsed time: 0.00464979 (76%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0124638
Total Core solution elapsed time: 0.00696726
Linear solver elapsed time: 0.00519826 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0108485
Total Core solution elapsed time: 0.00628047
Linear solver elapsed time: 0.00464523 (74%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0117017
Total Core solution elapsed time: 0.00644712
Linear solver elapsed time: 0.00480457 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0157606
Total Core solution elapsed time: 0.00651145
Linear solver elapsed time: 0.00485852 (75%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0121002
Total Core solution elapsed time: 0.0060698
Linear solver elapsed time: 0.00451756 (74%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0213402
Total Core solution elapsed time: 11.1986
Linear solver elapsed time: 5.98496 (53%)
Total elapsed time: 0 hrs 0 min 11 sec
SUCCESS difference: 4.2e-14 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vx1
SUCCESS difference: 5.7e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vy1
SUCCESS difference: 5.7e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vel1
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Pressure1
SUCCESS difference: 1.6e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Bed1
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Surface1
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Thickness1
SUCCESS difference: 3e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: SmbMassBalance1
SUCCESS difference: 4.5e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vx2
SUCCESS difference: 4.6e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vy2
SUCCESS difference: 4.6e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vel2
SUCCESS difference: 1.3e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Pressure2
SUCCESS difference: 1.6e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Bed2
SUCCESS difference: 1.6e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Surface2
SUCCESS difference: 1.6e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Thickness2
SUCCESS difference: 2.1e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: SmbMassBalance2
SUCCESS difference: 6e-14 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vx3
SUCCESS difference: 7.6e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vy3
SUCCESS difference: 7.7e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vel3
SUCCESS difference: 1.8e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Pressure3
SUCCESS difference: 1.8e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Bed3
SUCCESS difference: 1.8e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Surface3
SUCCESS difference: 1.8e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Thickness3
SUCCESS difference: 3e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: SmbMassBalance3
SUCCESS difference: 2.3e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vx4
SUCCESS difference: 1.6e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vy4
SUCCESS difference: 1.6e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vel4
SUCCESS difference: 2.2e-16 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Pressure4
SUCCESS difference: 1.1e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Bed4
SUCCESS difference: 1.2e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Surface4
SUCCESS difference: 1.1e-15 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Thickness4
SUCCESS difference: 2.1e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: SmbMassBalance4
SUCCESS difference: 4.9e-14 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vx5
SUCCESS difference: 4.7e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vy5
SUCCESS difference: 4.7e-15 < 1e-09 test id: 1501 test name: SquareShelfTranSawTooth2d field: Vel5
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Pressure5
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Bed5
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Surface5
SUCCESS difference: 1.5e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: Thickness5
SUCCESS difference: 3e-14 < 1e-10 test id: 1501 test name: SquareShelfTranSawTooth2d field: SmbMassBalance5
----------------finished:1501-----------------------
----------------starting:1502-----------------------
[Warning: paterson is outdated, please consider using cuffey instead]
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no balancethickness.thickening_rate specified: values set as zero
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0118904
Total Core solution elapsed time: 0.00403101
Linear solver elapsed time: 0.00265635 (66%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0149818
Total Core solution elapsed time: 0.00375637
Linear solver elapsed time: 0.00252726 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0117486
Total Core solution elapsed time: 0.00383959
Linear solver elapsed time: 0.0025864 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0122019
Total Core solution elapsed time: 0.00379973
Linear solver elapsed time: 0.00258301 (68%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0127367
Total Core solution elapsed time: 0.00389892
Linear solver elapsed time: 0.00258817 (66%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.012351
Total Core solution elapsed time: 0.00387423
Linear solver elapsed time: 0.00260814 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0126014
Total Core solution elapsed time: 0.00397897
Linear solver elapsed time: 0.00268229 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0115625
Total Core solution elapsed time: 0.00391704
Linear solver elapsed time: 0.00262912 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0119289
Total Core solution elapsed time: 0.00398164
Linear solver elapsed time: 0.0026895 (68%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0124933
Total Core solution elapsed time: 0.00399184
Linear solver elapsed time: 0.00262884 (66%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0119391
Total Core solution elapsed time: 0.00377721
Linear solver elapsed time: 0.00253699 (67%)
Total elapsed time: 0 hrs 0 min 0 sec
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.032109
Total Core solution elapsed time: 8.07441
Linear solver elapsed time: 2.79509 (35%)
Total elapsed time: 0 hrs 0 min 8 sec
SUCCESS difference: 3.9e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vx1
SUCCESS difference: 4e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vy1
SUCCESS difference: 2.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vz1
SUCCESS difference: 4.5e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vel1
SUCCESS difference: 1.3e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Pressure1
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Bed1
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Surface1
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Thickness1
SUCCESS difference: 2.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: SmbMassBalance1
SUCCESS difference: 2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vx2
SUCCESS difference: 2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vy2
SUCCESS difference: 2.7e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vz2
SUCCESS difference: 2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vel2
SUCCESS difference: 7e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Pressure2
SUCCESS difference: 6.7e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Bed2
SUCCESS difference: 7e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Surface2
SUCCESS difference: 6.8e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Thickness2
SUCCESS difference: 1.7e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: SmbMassBalance2
SUCCESS difference: 4.3e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vx3
SUCCESS difference: 4.5e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vy3
SUCCESS difference: 2.6e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vz3
SUCCESS difference: 4.5e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vel3
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Pressure3
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Bed3
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Surface3
SUCCESS difference: 1.2e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Thickness3
SUCCESS difference: 2.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: SmbMassBalance3
SUCCESS difference: 2.6e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vx4
SUCCESS difference: 2.6e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vy4
SUCCESS difference: 3.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vz4
SUCCESS difference: 2.6e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vel4
SUCCESS difference: 8.1e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Pressure4
SUCCESS difference: 7.7e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Bed4
SUCCESS difference: 8e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Surface4
SUCCESS difference: 7.7e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Thickness4
SUCCESS difference: 1.7e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: SmbMassBalance4
SUCCESS difference: 3.9e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vx5
SUCCESS difference: 7.9e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vy5
SUCCESS difference: 2.4e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vz5
SUCCESS difference: 7.9e-15 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Vel5
SUCCESS difference: 1.4e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Pressure5
SUCCESS difference: 1.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Bed5
SUCCESS difference: 1.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Surface5
SUCCESS difference: 1.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: Thickness5
SUCCESS difference: 2.5e-14 < 1e-13 test id: 1502 test name: SquareShelfTranSawTooth3d field: SmbMassBalance5
----------------finished:1502-----------------------
----------------starting:2001-----------------------
[Warning: paterson is outdated, please consider using cuffey instead]
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.0205885
Total Core solution elapsed time: 3.36131
Linear solver elapsed time: 0.000194752 (0.0058%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
SUCCESS difference: 0 < 1e-13 test id: 2001 test name: SquareSheetConstrainedGia2d field: UGrd
----------------finished:2001-----------------------
----------------starting:2003-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2003.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.0723576
Total Core solution elapsed time: 0.501555
Linear solver elapsed time: 0.000105205 (0.021%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2003.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.0705178
Total Core solution elapsed time: 0.549601
Linear solver elapsed time: 0.000115941 (0.021%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 5.6e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 7.7e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 5.3e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
----------------finished:2003-----------------------
----------------starting:2005-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2005.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 2.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 3.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 4.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 5.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 6.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 7.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 8.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 9.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 10.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.262994
Total Core solution elapsed time: 0.829713
Linear solver elapsed time: 0.000860379 (0.1%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel1
SUCCESS difference: 8.3e-16 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel5
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel10
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Seustatic10
----------------finished:2005-----------------------
----------------starting:2007-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
[Warning: no ice present in the domain]
marshalling file test2007.bin
external (offlinesolidearthsolution) solution:
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 0.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 2/10 time [yr]: 1.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 3/10 time [yr]: 1.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 4/10 time [yr]: 2.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 5/10 time [yr]: 2.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 6/10 time [yr]: 3.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 7/10 time [yr]: 3.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 8/10 time [yr]: 4.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 9/10 time [yr]: 4.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 10/10 time [yr]: 5.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.02068
Total Core solution elapsed time: 0.0497687
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 3.3e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: Geoid
SUCCESS difference: 4e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedUp
SUCCESS difference: 2.5e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedEast
SUCCESS difference: 3.8e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedNorth
----------------finished:2007-----------------------
----------------starting:2008-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2008.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.28744
Total Core solution elapsed time: 0.351304
Linear solver elapsed time: 9.8365e-05 (0.028%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2008.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing external solid earth contributions
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.247388
Total Core solution elapsed time: 0.340784
Linear solver elapsed time: 9.9962e-05 (0.029%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.5e-15 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelGrd
SUCCESS difference: 6.6e-15 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockGrd
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelAdditional
SUCCESS difference: 6.7e-15 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockAdditional
----------------finished:2008-----------------------
----------------starting:2051-----------------------
[Warning: paterson is outdated, please consider using cuffey instead]
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
checking model consistency
marshalling file test2051.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis MasstransportAnalysis
Input updates from constant
creating datasets for analysis SealevelchangeAnalysis
creating datasets for analysis L2ProjectionBaseAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis MasstransportAnalysis:
toolkits Options set for analysis: MasstransportAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis SealevelchangeAnalysis:
toolkits Options set for analysis: SealevelchangeAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis L2ProjectionBaseAnalysis:
toolkits Options set for analysis: L2ProjectionBaseAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
Updating Mmes
iteration 1/3 time [yr]: 0.00 (time step: 2002100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 0
Renumbering degrees of freedom
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 2/3 time [yr]: 2002100.00 (time step: 2002100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.0021e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 3/3 time [yr]: 2500000.00 (time step: 497900.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.5e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.0207311
Total Core solution elapsed time: 3.9763
Linear solver elapsed time: 0.000427751 (0.011%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2051.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis MasstransportAnalysis
Input updates from constant
creating datasets for analysis SealevelchangeAnalysis
creating datasets for analysis L2ProjectionBaseAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis MasstransportAnalysis:
toolkits Options set for analysis: MasstransportAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis SealevelchangeAnalysis:
toolkits Options set for analysis: SealevelchangeAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis L2ProjectionBaseAnalysis:
toolkits Options set for analysis: L2ProjectionBaseAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
Updating Mmes
iteration 1/3 time [yr]: 0.00 (time step: 2005100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 0
Renumbering degrees of freedom
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 2/3 time [yr]: 2005100.00 (time step: 2005100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.0051e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 3/3 time [yr]: 2500000.00 (time step: 494900.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.5e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.0197529
Total Core solution elapsed time: 3.94532
Linear solver elapsed time: 0.000435576 (0.011%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2051.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis MasstransportAnalysis
Input updates from constant
creating datasets for analysis SealevelchangeAnalysis
creating datasets for analysis L2ProjectionBaseAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis MasstransportAnalysis:
toolkits Options set for analysis: MasstransportAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis SealevelchangeAnalysis:
toolkits Options set for analysis: SealevelchangeAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
Processing finite element model of analysis L2ProjectionBaseAnalysis:
toolkits Options set for analysis: L2ProjectionBaseAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
Updating Mmes
iteration 1/3 time [yr]: 0.00 (time step: 2010100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 0
Renumbering degrees of freedom
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 2/3 time [yr]: 2010100.00 (time step: 2010100.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.0101e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
iteration 3/3 time [yr]: 2500000.00 (time step: 489900.00)
computing basal mass balance
toolkits Options set for analysis: MasstransportAnalysis
computing mass transport
call computational core
toolkits Options set for analysis: MasstransportAnalysis
Updating constraints and active domain of analysis MasstransportAnalysis for time: 2.5e+06
Allocating matrices (Kff stiffness matrix size: 0 x 0)
Assembling matrices
Create nodal constraints
Dirichlet lifting applied to load vector
Solving matrix system
#PETSc Option Table entries:
-ksp_type preonly # (source: code)
-mat_mumps_icntl_14 120 # (source: code)
-mat_mumps_icntl_28 2 # (source: code)
-mat_mumps_icntl_29 2 # (source: code)
-mat_type mpiaij # (source: code)
-pc_factor_mat_solver_type mumps # (source: code)
-pc_type lu # (source: code)
#End of PETSc Option Table entries
solver residue: norm(KU-F)/norm(F)=0
Merging solution vector from fset to gset
Updating inputs from solution for MasstransportAnalysis
updating vertices positions
computing sea level change
toolkits Options set for analysis: SealevelchangeAnalysis
computing vertical deformation using Ivins model.
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.0233608
Total Core solution elapsed time: 4.06066
Linear solver elapsed time: 0.000675236 (0.017%)
Total elapsed time: 0 hrs 0 min 4 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2051 test name: GiaIvinsBenchmarksAB2dA field: U_AB2dA1
SUCCESS difference: 0 < 1e-13 test id: 2051 test name: GiaIvinsBenchmarksAB2dA field: U_AB2dA2
SUCCESS difference: 0 < 1e-13 test id: 2051 test name: GiaIvinsBenchmarksAB2dA field: U_AB2dA3
----------------finished:2051-----------------------
----------------starting:2070-----------------------
checking model consistency
marshalling file test2070.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 13, surface/Depth Love number ratio small: 1.64964e-28
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 4.02754e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 1.45142e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 429, surface/Depth Love number ratio small: 9.27061e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 697, surface/Depth Love number ratio small: 9.95155e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
tidal
write lock file:
FemModel initialization elapsed time: 0.0107127
Total Core solution elapsed time: 1.16885
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2070.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 13, surface/Depth Love number ratio small: 8.35499e-29
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 30, surface/Depth Love number ratio small: 8.15353e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 82, surface/Depth Love number ratio small: 9.41507e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 443, surface/Depth Love number ratio small: 9.95001e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 1145, surface/Depth Love number ratio small: 4.76534e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
write lock file:
FemModel initialization elapsed time: 0.0142372
Total Core solution elapsed time: 0.98721
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_tidal_elastic
----------------finished:2070-----------------------
----------------starting:2071-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2071.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 13, surface/Depth Love number ratio small: 1.64964e-28
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 4.02754e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 1.45142e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 429, surface/Depth Love number ratio small: 9.27061e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 697, surface/Depth Love number ratio small: 9.95155e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 874/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.88344e-06; Delta_k/k=1.88981e-06; Delta_l/l=0.000989442; threshold set to 0.001
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parallel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.0111313
Total Core solution elapsed time: 22.6848
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 23 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 4e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveH_loading_temporal
SUCCESS difference: 0 < 2e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveK_loading_temporal
SUCCESS difference: 0 < 2e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveL_loading_temporal
----------------finished:2071-----------------------
----------------starting:2072-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2072.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.74033 m.s^-2
Mean density: 5469.45 kg.m^-3
elastic
Degree: 13, surface/Depth Love number ratio small: 9.88424e-29
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.1057e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 83, surface/Depth Love number ratio small: 6.77074e-21
Changing the interface where integration starts
New start interface: r=3.6e+06m
Degree: 84, surface/Depth Love number ratio small: 8.87865e-21
Changing the interface where integration starts
New start interface: r=3.6305e+06m
Degree: 86, surface/Depth Love number ratio small: 5.91422e-21
Changing the interface where integration starts
New start interface: r=3.7e+06m
Degree: 89, surface/Depth Love number ratio small: 5.95205e-21
Changing the interface where integration starts
New start interface: r=3.9e+06m
Degree: 98, surface/Depth Love number ratio small: 7.88602e-21
Changing the interface where integration starts
New start interface: r=4e+06m
Degree: 103, surface/Depth Love number ratio small: 9.25414e-21
Changing the interface where integration starts
New start interface: r=4.2e+06m
Degree: 115, surface/Depth Love number ratio small: 9.66201e-21
Changing the interface where integration starts
New start interface: r=4.3e+06m
Degree: 122, surface/Depth Love number ratio small: 9.31952e-21
Changing the interface where integration starts
New start interface: r=4.5e+06m
Degree: 138, surface/Depth Love number ratio small: 9.35647e-21
Changing the interface where integration starts
New start interface: r=4.6e+06m
Degree: 148, surface/Depth Love number ratio small: 7.58385e-21
Changing the interface where integration starts
New start interface: r=4.8e+06m
Degree: 170, surface/Depth Love number ratio small: 8.32472e-21
Changing the interface where integration starts
New start interface: r=4.9e+06m
Degree: 183, surface/Depth Love number ratio small: 9.23372e-21
Changing the interface where integration starts
New start interface: r=5.1e+06m
Degree: 216, surface/Depth Love number ratio small: 9.35753e-21
Changing the interface where integration starts
New start interface: r=5.2e+06m
Degree: 237, surface/Depth Love number ratio small: 8.88834e-21
Changing the interface where integration starts
New start interface: r=5.4e+06m
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parallel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.0148936
Total Core solution elapsed time: 34.5717
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 34 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.2e-06 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveH_loading_elastic
SUCCESS difference: 7.7e-07 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveK_loading_elastic
SUCCESS difference: 1.6e-07 < 2e-06 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveL_loading_elastic
----------------finished:2072-----------------------
----------------starting:2073-----------------------
checking model consistency
marshalling file test2073.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
tidal
write lock file:
FemModel initialization elapsed time: 0.0137743
Total Core solution elapsed time: 0.000341151
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveYi_loading_elastic
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveRhs_loading_elastic
----------------finished:2073-----------------------
----------------starting:2074-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2074.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.82426 m.s^-2
Mean density: 5516.58 kg.m^-3
elastic
Degree: 11, surface/Depth Love number ratio small: 3.57762e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 2.83465e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 3.17574e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parallel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.0162015
Total Core solution elapsed time: 8.86668
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 8 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveHebm
SUCCESS difference: 0 < 1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveKebm
SUCCESS difference: 0 < 1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveLebm
----------------finished:2074-----------------------
----------------starting:2075-----------------------
checking model consistency
marshalling file test2075.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: (9.82426,0) m.s^-2
Mean density: (5516.58,0) kg.m^-3
elastic
loading
Degree: 2/2
tidal
write lock file:
FemModel initialization elapsed time: 0.0215963
Total Core solution elapsed time: 0.490729
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2075.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: (9.82426,0) m.s^-2
Mean density: (5516.58,0) kg.m^-3
elastic
loading
Degree: 2/2
tidal
write lock file:
FemModel initialization elapsed time: 0.0185859
Total Core solution elapsed time: 0.478346
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1e-15 < 1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHrEbm
SUCCESS difference: 3.9e-15 < 1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHiEbm
SUCCESS difference: 2.2e-15 < 1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHrMaxwell
SUCCESS difference: 3.5e-15 < 1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHiMaxwell
----------------finished:2075-----------------------
----------------starting:2084-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file FourierLoveTest.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 7, surface/Depth Love number ratio small: 4.13539e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 4.01783e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 83, surface/Depth Love number ratio small: 6.99808e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 437, surface/Depth Love number ratio small: 9.12139e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 722, surface/Depth Love number ratio small: 6.83906e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 876/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.87419e-06; Delta_k/k=1.88049e-06; Delta_l/l=0.000987463; threshold set to 0.001
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parallel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.0111612
Total Core solution elapsed time: 104.815
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 1 min 44 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveL_loading_elastic
----------------finished:2084-----------------------
----------------starting:2085-----------------------
checking model consistency
marshalling file kernels.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81344 m.s^-2
Mean density: 5511 kg.m^-3
elastic
write lock file:
FemModel initialization elapsed time: 0.0147575
Total Core solution elapsed time: 3.68488
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file kernels.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81344 m.s^-2
Mean density: 5511 kg.m^-3
elastic
tidal
write lock file:
FemModel initialization elapsed time: 0.01135
Total Core solution elapsed time: 3.63228
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 3e-17 < 3e-07 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree002
SUCCESS difference: 2.1e-55 < 3e-07 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree002
SUCCESS difference: 1.6e-26 < 3e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree002
SUCCESS difference: 3.4e-78 < 1e-07 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree002
SUCCESS difference: 3.8e-16 < 6e-08 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree002
SUCCESS difference: 3.1e-12 < 9e-07 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree002
SUCCESS difference: 5.4e-17 < 2e-07 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree020
SUCCESS difference: 2.5e-46 < 7e-08 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree020
SUCCESS difference: 2.5e-50 < 3e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree020
SUCCESS difference: 2.8e-78 < 9e-08 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree020
SUCCESS difference: 6.4e-31 < 9e-10 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree020
SUCCESS difference: 6.3e-36 < 8e-10 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree020
SUCCESS difference: 1e-15 < 2e-08 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree200
SUCCESS difference: 1.5e-51 < 4e-08 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree200
SUCCESS difference: 6.5e-18 < 4e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree200
SUCCESS difference: 3e-78 < 3e-08 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree200
SUCCESS difference: 1.8e-15 < 2e-10 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree200
SUCCESS difference: 1.3e-07 < 2e-07 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree200
SUCCESS difference: 3.8e-17 < 4e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree002
SUCCESS difference: 8.1e-57 < 1e-06 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree002
SUCCESS difference: 1.8e-24 < 4e-06 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree002
SUCCESS difference: 7.6e-79 < 3e-06 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree002
SUCCESS difference: 1.9e-17 < 8e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree002
SUCCESS difference: 3.9e-12 < 2e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree002
SUCCESS difference: 3.2e-17 < 2e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree020
SUCCESS difference: 3e-47 < 1e-07 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree020
SUCCESS difference: 1.4e-48 < 5e-06 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree020
SUCCESS difference: 8.7e-79 < 3e-07 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree020
SUCCESS difference: 1.5e-30 < 2e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree020
SUCCESS difference: 9.8e-37 < 2e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree020
SUCCESS difference: 1.1e-15 < 2e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree200
SUCCESS difference: 6.2e-53 < 9e-10 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree200
SUCCESS difference: 1.4e-15 < 5e-05 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree200
SUCCESS difference: 6.2e-79 < 3e-08 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree200
SUCCESS difference: 4.2e-16 < 5e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree200
SUCCESS difference: 3e-07 < 4e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree200
----------------finished:2085-----------------------
----------------starting:2101-----------------------
gmtmask: num vertices 1286
gmtmask: done
[Warning: paterson is outdated, please consider using cuffey instead]
checking model consistency
marshalling file test2101.bin
launching solution sequence
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(GitHub: https://issmteam.github.io/ISSM-Documentation/ Documentation: https://github.com/ISSMteam/ISSM/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.30655
Total Core solution elapsed time: 0.00356054
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 1.5e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 1.1e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaGravitationalAcceleration
----------------finished:2101-----------------------
Build step 'Execute shell' marked build as failure
Finished: FAILURE