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Effect of element sizes in random field finite element simulations of soil shear strength
Journal article   Peer reviewed

Effect of element sizes in random field finite element simulations of soil shear strength

Jianye Ching and Kok-Kwang Phoon
Computers & structures, Vol.126(1), pp.120-134
15/09/2013

Abstract

Computer Science Computer Science, Interdisciplinary Applications Engineering Engineering, Civil Science & Technology Technology
In random field finite element analysis (FEA), continuous random fields must be discretized, and the discretized solution is different from the continuous one. In this paper, it is found that the tolerable maximum element size to achieve acceptable accuracy for soil shear strength is surprisingly small. The discrepancy is governed by the line averaging effect along potential slip curves - the discrepancy is small if the line averaging is strong. Discretization based on element-level averaging (ELA) is always unconservative, giving mobilized shear strength always larger than the actual value, while discretization based on the midpoint method can be sometimes conservative. (C) 2012 Elsevier Ltd. All rights reserved.

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