DOI QR코드

DOI QR Code

Parallel Computation of a Nonlinear Structural Problem using Parallel Multifrontal Solver

다중 프런트 해법을 이용한 비선형 구조문제의 병렬계산

  • Published : 2003.03.01

Abstract

In this paper, nonlinear parallel structural analyses are introduced by using the parallel multifrontal solver and damage localization for 2D and 3D crack models is presented as the application of nonlinear parallel computation. The parallel algorithms related with nonliear reduce the amount of memory used is carried out because many variables should be utilized for this highly nonlinear damage analysis. Also, Riks' continuation method is parallelized to search the solution when strain softening occurs due to damage evolution. For damage localization problem, several computational models having up to around 1-million degree of freedoms are used. The parallel performance in this nonlinear parallel algorithm is shown through these examples and the local variation of damage at crack tip is compared among the models with different degree of freedoms.

본 논문에서는, 병렬 다중 프런트 해법을 이용한 비선형 병렬 구조해석 과정을 소개하고 이의 응용예제로써 2차원 및 3차원 균열 모델에서의 손상 국부화를 모사하였다. 비선형 유한요소 해석과 연속체 손상역학과 관련된 병렬 알고리듬을 구현하였고, 비선형 손상해석에서 사용되는 많은 변수들을 저장하기 위해서는 메모리가 많이 필요하므로 이를 줄이는 방안을 고려하였다. 그리고 손상 진전으로 인한 변형도 연화가 발생할 때 해를 구하기 위해 사용한 Riks의 연속법도 병렬 계산에 맞도록 수정하였다. 수치예제로써, 최대 약 1백만 자유도를 가진 모델들을 사용하여 손상 국부화 문제를 해석하였는데, 이 예제에서 비선형 병렬 알고리듬의 병렬효율과 자유도 변화에 따른 균열 끝단에서의 손상 변화를 살펴보았다.

Keywords

References

  1. L.N.B. Gummadi and A.N. Palazotto, "Nonlinear finite element analysis of beams and arches using parallel processors," Computers & Structures, 63(3), 1997, pp.4 13-428. https://doi.org/10.1016/S0045-7949(96)00343-4
  2. G.P. Nikishkov, M. Kawka, A Makinouch, G. Yagawa and S. Yoshimura, "Porting an industrial sheet metal forming code to a distributed memory parallel computer," Computers & Structures, 67, 1998, pp.4 39-449. https://doi.org/10.1016/S0045-7949(98)00057-1
  3. Manuel L. Romero, Pedro F. Miguel and Juan J. Cane, "A parallel procedure for nonlinear analysis of reinforced concrete three dimensional frames," Computers & Structures, 80, 2000, pp.1337- 1350. https://doi.org/10.1016/S0045-7949(02)00091-3
  4. B.C. Watson and A.K. Noor, "Nonlinear structural analysis on distributed-memory computers," Computers & Structures, 58(2), 1996, pp.233-247. https://doi.org/10.1016/0045-7949(95)00137-6
  5. Mark Adams and R.L. Taylor, "Parallel multigrid solvers for 3D unstructured large degormation elasticity and plasticity finite element problems," Finite Elements in Analysis and Design, 36, 2000, pp .197-214. https://doi.org/10.1016/S0168-874X(00)00033-0
  6. Tomoshi Miyamura, Hirohisa Noguchi, Ryuji Shioya, Shinobu Yoshimura and Genki Yagawa, "Tomoshi Miyamura;Hirohisa Noguchi;Ryuji Shioya;Shinobu Yoshimura;Genki Yagawa," Nuclear Engineering and Design, 212, 2002, pp.335-355. https://doi.org/10.1016/S0029-5493(01)00497-6
  7. F.J. Lingen and M.G.A. Tijssens, "An efficient parallel precedure for the simulation of crack growth using the cohesive surface methodology," Int. J. Numer. Meth. Engrg., 52, 2001, pp.867-888. https://doi.org/10.1002/nme.250
  8. Xi-Qiao Feng and Shou-Wen Yu, "Analyses of damage localization at crack tip in a brittle damaged material," Engrg. Frac. Mech ., 53(2), 1996, pp.169-177. https://doi.org/10.1016/0013-7944(95)00110-7
  9. J.H. Kim and S.J. Kim, A multifrontal solver comvined with graph partitioners," AIAA Journal, 38(8), August 1999, pp.964-970.
  10. Seung Jo Kim, Chang Sung Lee and Jeong Ho Kim, "Large-scale structural analysis by parallel multifrontal solver thorough internet based PC AIAA Journal, 40(2), February 2002, pp .359-367
  11. Charbel Farhat, Kendall Pierson and Michel Lesoinne, "The second generation FETI methods and their application to the parallel solution of large0scale linear to the parallel solution of large-scale linear and geometrically nonlinear structural problems," Comput. Methods Appl. Mech . Engrg., 184, 2000, pp.333-374. https://doi.org/10.1016/S0045-7825(99)00234-0
  12. Charbel Farhat, Michel Lesoinne, Patrick LeTallec, Kendall Pierson and Daniel Rixen, "FETI-DP : a dual-primal unified FETI method-part I : A fasteralternative to the two-level FETI method," Int. J. Numer. Meth. Engrg., 50, 2001, pp.1523-1544. https://doi.org/10.1002/nme.76
  13. Arne S. Gullerud and Robert H. Dodds Jr., "MPI-based implementation of a PCG solver using an EBE architecture and preconditioner for implicit 3-D finite element analysis," Computers & Structures, 79, 2001, pp.553-575. https://doi.org/10.1016/S0045-7949(00)00153-X
  14. Bodo Heise and Michael Jung, "Parallel solvers for nonlinear elliptic problems based on domain decomposition idears," Parallel Computing, 22, 1997, pp.1527-1544. https://doi.org/10.1016/S0167-8191(96)00055-5
  15. P. Geng, J.T. Oden and R.A. van de Gejin, "Parallel multifronral algorithm and its implementation," Comput. Methods Appl. Mech. Engrg., 149(1-4), 1997, pp.289-302. https://doi.org/10.1016/S0045-7825(97)00052-2
  16. Eugene L. Poole, Norman F. Knight, Jr and D. Dale Davis, Jr, "HHigh performance equation solvers and their impact on finite element analysis," Int. J. Numer. Meth. Engrg., 33, 1992, pp.855-868. https://doi.org/10.1002/nme.1620330412
  17. 정순완, 김승조, "등방성 연성손상모델을 이용한 손상진전과 파괴현상의 수치모사", 한국항공우주학회지, 제29권, 제2호, 2001, pp. 52-60.
  18. Jin Hee Kim, Seung Jo Kim and Wie Dae Kim, "A finite element analysis of damage propagation during metal forming process," Engrg. Frac. Mech., 51(6), 1995, pp .915-931. https://doi.org/10.1016/0013-7944(94)00334-E
  19. Jean Lernaitre, A Course on Damage Mechanics, Springer, 1996, pp .110-112.
  20. S.J. Kim and W.D. Kim, "A progressive damage modeling based on the continuum damage mechanics and its finite element analysis," ASME, Journal of Applied Mechanics, 61, 1994, pp.45-S3. https://doi.org/10.1115/1.2901419
  21. Seung Jo Kim, Chang Sung Lee, Byung Un Ha, Ji Duck Choi, Jin Yean Cho and Jeong Ho Kim, "10 million DOF finite element structural analysis via Internet Supercomputing," 42nd AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and material conference & exhibit, Seattle, WA, 16-19 April, 2001.
  22. Murray J. Clarke and Gregory J. Hancock, "A study of incremental-iterative strategies for nonlinear analysis," Int. J. Numer. Meth. Engrg., 29, 1990, pp.1365-1391. https://doi.org/10.1002/nme.1620290702
  23. LAM Team, "LAM/MPI ND Use's guide," http://www.mpi .nd .edu/mpUutorials/lam.
  24. G. Amdahl, "Validity of the single processor approach to achieving large scale computing capabilities," AFIPS Conference Proceedings, 30, Thompson Books, Washington DC, 1967, pp .483-485.