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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:德国汉诺威大学
学位:博士
所在单位:力学与航空航天学院
学科:工程力学. 计算力学. 生物与纳米力学
电子邮箱:zhanghw@dlut.edu.cn
Improved convected particle domain interpolation method for coupled dynamic analysis of fully saturated porous media involving large deformation
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论文类型:期刊论文
发表时间:2013-04-15
发表刊物:COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING
收录刊物:SCIE、EI
卷号:257
页面范围:150-163
ISSN号:0045-7825
关键字:Saturated porous media; Convected particle domain interpolation; Dynamic analysis; Dynamic contact; Large deformation
摘要:Based on the u-p form governing equations and the convected particle domain interpolation technique, the improved convected particle domain interpolation based material point method (CCPDI) is developed in this paper for the coupled dynamic and contact analysis of fully saturated porous media involving large deformation. The numerical artifact noises due to material points crossing computational grid boundaries that usually occur in large deformation are eliminated by using the smoother interpolation functions presented in the convected particle domain interpolation technique. The discrete equations are derived in the framework of the generalized interpolation material point method. The boundary load tracking algorithm and a modified contact algorithm are proposed based on the definition of particle domains to apply accurately the surface loads on the motive boundaries and to capture correctly the contact time/behaviors in large deformation problems, respectively. Simulations of several representative one- and two-dimensional problems are presented to demonstrate the accuracy and effectiveness of the proposed methods. Compared to those obtained by using the coupling material point method and/or finite element method, the simulation results illustrate that the proposed CCPDI method can be successfully used in simulating the large deformation coupled dynamic responses of the solid skeleton and fluid phase in fully saturated porous media and the large deformation impact between solid and saturated porous bodies. (C) 2013 Elsevier B.V. All rights reserved.