v6.03.162 SSNP162 — 2D and 3D joints for laws JOINT_MECA_RUPT and JOINT_MECA_FROT#
Summary:
The purpose of this test is to validate hydro-mechanical joint elements for the behavior laws of dams JOINT_MECA_RUPT and JOINT_MECA_FROT.
We test both the pure mechanical models PLAN_JOINT in \(\mathrm{2D}\) (mesh QUAD4, QUAD8) and 3D_ JOINT in \(\mathrm{3D}\) (mesh HEXA8, HEXA20 or PENTA6, PENTA15) with both laws in the presence of imposed pressure. Then, again for the same quadratic elements, the coupled hydro-mechanical models PLAN_JOINT_HYME and C3D_ JOINT_HYME, with the underpressure profile obtained in the calculation.
The elements on which these models are based are the standard cohesive joint elements.
Modeling \(A\): PLAN_JOINT mesh QUAD4 with JOINT_MECA_RUPT
Modeling \(B\): 3D_ JOINTmaille HEXA8 with JOINT_MECA_RUPT
Modeling \(C\): 3D_ JOINTmaille PENTA6 with JOINT_MECA_RUPT
Modeling \(D\): PLAN_JOINT mesh QUAD4 with JOINT_MECA_FROT
Modeling \(E\): 3D_ JOINTmaille HEXA8 with JOINT_MECA_FROT
Modeling \(F\): 3D_ JOINTmaille PENTA6 with JOINT_MECA_FROT
Modeling \(G\): PLAN_JOINT_HYME mesh QUAD8 with JOINT_MECA_RUPT
Modeling \(H\): 3D_ JOINT_HYME mesh HEXA20 with JOINT_MECA_RUPT
Modeling \(I\): 3D_ JOINT_HYME mesh PENTA15 with JOINT_MECA_RUPT
Modeling \(J\): PLAN_JOINT_HYME mesh QUAD8 with JOINT_MECA_FROT
Modeling \(K\): 3D_ JOINT_HYME mesh HEXA20 with JOINT_MECA_FROT
Modeling \(L\): 3D_ JOINT_HYME mesh PENTA15 with JOINT_MECA_FROT
Modeling \(M\): PLAN_JOINT mesh QUAD8 with JOINT_MECA_RUPT
Modeling \(N\): 3D_ JOINTmaille HEXA20 with JOINT_MECA_RUPT
Modeling \(O\): 3D_ JOINTmaille PENTA15 with JOINT_MECA_RUPT
Modeling \(P\): PLAN_JOINT mesh QUAD8 with JOINT_MECA_FROT
Modeling \(Q\): 3D_ JOINTmaille HEXA20 with JOINT_MECA_FROT
Modeling \(R\): 3D_ JOINTmaille PENTA15 with JOINT_MECA_FROT
- 1. Reference problem
- 2. Benchmark solution
- 3. Modeling A
- 4. B modeling
- 5. C modeling
- 6. D modeling
- 7. Modeling E
- 8. F modeling
- 9. G modeling
- 10. H modeling
- 11. Modeling I
- 12. J modeling
- 13. K modeling
- 14. L modeling
- 15. M modeling
- 16. N modeling
- 17. O modeling
- 18. P modeling
- 19. R modeling
- 20. S modeling
- 21. Summary of results