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An explicit finite element method for dynamic analysis in three-medium coupling system and its application

赵成刚 李伟华 王进廷 李亮

地震学报(英文版)2003,Vol.16Issue(3):272-282,11.
地震学报(英文版)2003,Vol.16Issue(3):272-282,11.

An explicit finite element method for dynamic analysis in three-medium coupling system and its application

An explicit finite element method for dynamic analysis in three-medium coupling system and its application

赵成刚 1李伟华 1王进廷 2李亮1

作者信息

  • 1. School of Civil Engineering & Architecture, Northern Jiao-tong University, Beijing 100044, China
  • 2. School of Civil Engineering & Hydropower Engineering, Tsing Hua University, Beijing 100084, China
  • 折叠

摘要

Abstract

In this paper, an explicit finite element method to analyze the dynamic responses of three-medium coupled systems with any terrain is developed on the basis of the numerical simulation of the continuous conditions on the boundaries among fluid saturated porous medium, elastic single-phase medium and ideal fluid medium. This method is a very effective one with the characteristic of high calculating speed and small memory needed because the formulae for this explicit finite element method have the characteristic of decoupling, and which does not need to solve system of linear equations. The method is applied to analyze the dynamic response of a reservoir with considering the dynamic interactions among water, dam, sediment and basement rock. The vertical displacement at the top point of the dam is calculated and some conclusions are given.

关键词

fluid saturated porous medium-elastic single-phase medium-ideal fluid medium coupled system/dynamic response analysis/explicit finite element method

Key words

fluid saturated porous medium-elastic single-phase medium-ideal fluid medium coupled system/dynamic response analysis/explicit finite element method

分类

天文与地球科学

引用本文复制引用

赵成刚,李伟华,王进廷,李亮..An explicit finite element method for dynamic analysis in three-medium coupling system and its application[J].地震学报(英文版),2003,16(3):272-282,11.

基金项目

National Natural Sciences Foundation of China (50178005). (50178005)

地震学报(英文版)

1000-9116

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