88 lines
2.4 KiB
Plaintext
88 lines
2.4 KiB
Plaintext
08/20/2025 19:19:37
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######## Starting run step number: 1 Increment number: 1 ########
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Running command: D:\PrePoMax v2.3.9 dev\Solver\ccx_dynamic.exe Analysis-1
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************************************************************
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CalculiX Version 2.22, Copyright(C) 1998-2024 Guido Dhondt
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CalculiX comes with ABSOLUTELY NO WARRANTY. This is free
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software, and you are welcome to redistribute it under
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certain conditions, see gpl.htm
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************************************************************
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You are using an executable made on Sun Aug 4 19:44:24 2024
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The numbers below are estimated upper bounds
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number of:
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nodes: 854
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elements: 357
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one-dimensional elements: 0
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two-dimensional elements: 0
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integration points per element: 4
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degrees of freedom per node: 3
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layers per element: 1
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distributed facial loads: 80
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distributed volumetric loads: 0
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concentrated loads: 0
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single point constraints: 252
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multiple point constraints: 1
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terms in all multiple point constraints: 1
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tie constraints: 0
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dependent nodes tied by cyclic constraints: 0
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dependent nodes in pre-tension constraints: 0
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sets: 11
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terms in all sets: 1835
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materials: 1
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constants per material and temperature: 2
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temperature points per material: 1
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plastic data points per material: 0
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orientations: 0
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amplitudes: 6
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data points in all amplitudes: 6
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print requests: 0
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transformations: 0
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property cards: 0
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STEP 1
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Static analysis was selected
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Decascading the MPC's
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Determining the structure of the matrix:
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Using up to 1 cpu(s) for setting up the structure of the matrix.
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number of equations
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2436
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number of nonzero lower triangular matrix elements
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73446
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Using up to 1 cpu(s) for the stress calculation.
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Using up to 1 cpu(s) for the symmetric stiffness/mass contributions.
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Factoring the system of equations using the symmetric pardiso solver
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number of threads = 1
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Using up to 1 cpu(s) for the stress calculation.
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Job finished
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________________________________________
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Total CalculiX Time: 0.178258
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________________________________________
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Process elapsed time: 0.211 s
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