Fast multipole boundary element method for the simulation of acoustic-structure interaction

被引:0
|
作者
Gaul, L. [1 ]
Fischer, M. [1 ]
机构
[1] Univ Stuttgart, Inst Appl & Expt Mech, Stuttgart, Germany
关键词
fast multipole Galerkin BEM; acoustic-structure interaction; mortar BEM-FEM coupling;
D O I
10.2495/FS1070291
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
A fast multilevel multipole algorithm (FMM) is derived for the Helmholtz equation and adopted to the symmetric Galerkin boundary element method (BEM) for acoustics. The FMM allows to evaluate a matrix-vector product of the BEM with a computational cost of O(N log(2) N), thus leading to a significant reduction of computation time and memory requirements compared to standard BEM formulations. This allows the simulation of large scale acoustic models. A coupling algorithm based on Lagrange Multipliers is proposed for the simulation of structure-acoustic field interaction. Finite plate elements are coupled to a Galerkin boundary element formulation of the acoustic domain. The interface pressure is interpolated as a Lagrange multiplier, thus, allowing the coupling of non-matching grids. The resulting saddle point problem is solved by an approximate Uzawa-type scheme in which the matrix-vector products of the boundary element operators are evaluated efficiently by the fast rnultipole boundary element method. The algorithm is demonstrated on the example of a cavity backed elastic panel.
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页码:313 / +
页数:2
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