Application of Parallel Processing System for free drop simulation of IT-related modules

IT 모듈의 자유 낙하 모사를 위한 병렬처리시스템의 적용

  • Park Y.J. (Dept. of Mech. Eng., Graduate School of SKKU) ;
  • Lee J.S. (Division of Mech. System Design Eng. KGU) ;
  • Ko H.O. (Dept. of Mech. Design, Graduate School of SKKU) ;
  • Chang Y.S. (School of Mech. Eng., SKKU) ;
  • Choi J.B. (School of Mech. Eng., SKKU) ;
  • Kim Y.J. (School of Mech. Eng., SKKU)
  • 박영재 (성균관대 대학원 기계공학과) ;
  • 이준성 (경기대 기계시스템공학부) ;
  • 고한옥 (성균관대 대학원 기계설계학과) ;
  • 장윤석 (성균관대 기계공학부) ;
  • 최재붕 (성균관대 기계공학부) ;
  • 김영진 (성균관대 기계공학부)
  • Published : 2006.05.01

Abstract

Recently, the flat display modules such as plasma or TFT-LCD employ thin crystallized panels which are normally weak to high level transient mechanical energy inputs. As a result, anti-shock performance is one of the most important design specifications for TFT-LCD modules. However, most of large display module designs are generated based on engineers own experiences. Also, a large-scale analysis to evaluate complex material and structural behaviors is one of interesting topic in diverse engineering and scientific fields. The utilization of massively parallel processors has also been a recent trend of high performance computing. The objective of this paper is to introduce a parallel process system which consists of general purpose finite element analysis solver as well as parallelized PC cluster. The parallel processing system is constructed using thirty-two processing elements and the finite element program is developed by adopting hierarchical domain decomposition method. In order to verify the efficiency of the established system, an impact analysis on thin and complex sub-parts of flat display modules is performed. The evaluation results showed a good agreement with the corresponding reference solutions, and thus, the parallel process system seems to be a useful tool fur the complex structural analysis such as IT related products.

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