Reliability Analysis of Stochastic Finite Element Model by the Adaptive Importance Sampling Technique

적응적 중요표본추출법에 의한 확률유한요소모형의 신뢰성분석

  • 김상효 (연세대학교 사회환경건축공학부) ;
  • 나경웅 (연세대학교 산업기술연구소)
  • Published : 1999.10.01

Abstract

The structural responses of underground structures are examined in probability by using the elasto-plastic stochastic finite element method in which the spatial distributions of material properties are assumed to be stochastic fields. In addition, the adaptive importance sampling method using the response surface technique is used to improve simulation efficiency. The method is found to provide appropriate information although the nonlinear Limit State involves a large number of basic random variables and the failure probability is small. The probability of plastic local failures around an excavated area is effectively evaluated and the reliability for the limit displacement of the ground is investigated. It is demonstrated that the adaptive importance sampling method can be very efficiently used to evaluate the reliability of a large scale stochastic finite element model, such as the underground structures located in the multi-layered ground.

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