Title of article
Fast multipole method applied to elastostatic BEM–FEM coupling
Author/Authors
Massimiliano Margonari، نويسنده , , Marc Bonnet، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
18
From page
700
To page
717
Abstract
BEM–FEM coupling is desirable for three-dimensional problems involving specific features such as (i) large or unbounded media with linear constitutive properties, (ii) cracks, (iii) critical parts of complex geometry requiring accurate stress analyses. However, for cases with a BEM discretization involving a large number NBEM of degrees of freedom, setting up the BEM contribution to the coupled problem using conventional techniques is an expensive image task. Moreover, the fully-populated BEM block entails a image storage requirement and a image contribution to the solution time via usual direct solvers. To overcome these pitfalls, the BEM contribution is formulated using the fast multipole method (FMM) and the coupled equations are solved by means of an iterative GMRES solver. Both the storage requirements and the solution times are found to be close to O(NBEM). A preconditioner based on the sparse approximate inverse of the BEM block is shown to improve the convergence of the GMRES solver. Numerical examples involving NBEM = O(105 − 106) unknowns, run on a PC computer, are presented; they include the Eshelby inclusion (as a validation example), a many-inclusion configuration, and a dam structure.
Keywords
BEM–FEM coupling , fast multipole method , Sparse approximate inverse
Journal title
Computers and Structures
Serial Year
2005
Journal title
Computers and Structures
Record number
1209722
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