Meshless analysis of potential problems in three dimensions with the hybrid boundary node method

被引:73
|
作者
Zhang, JM [1 ]
Tanaka, M [1 ]
Matsumoto, T [1 ]
机构
[1] Shinshu Univ, Fac Engn, Nagano 3808553, Japan
关键词
meshless methods; hybrid boundary node method; moving least-squares approximation;
D O I
10.1002/nme.904
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Combining a modified functional with the moving least-squares (MLS) approximation, the hybrid boundary node method (Hybrid BNM) is a truly meshless, boundary-only method. The method may have advantages from the meshless local boundary integral equation (MLBIE) method and also the boundary node method (BNM). In fact, the Hybrid BNN requires only the discrete nodes located on the surface of the domain. The Hybrid BNM has been applied to solve 2D potential problems. In this paper, the Hybrid BNM is extended to solve potential problems in three dimensions. Formulations of the Hybrid BNM for 3D potential problems and the MLS approximation on a generic surface are developed. A general computer code of the Hybrid BNM is implemented in C++. The main drawback of the 'boundary layer effect' in the Hybrid BNM in the 21) case is circumvented by an adaptive face integration scheme. The parameters that influence the performance of this method are studied through three different geometries and known analytical fields. Numerical results for the solution of the 3D Laplace's equation show that high convergence rates with mesh refinement and high accuracy are achievable. Copyright (C) 2004 John Wiley Sons, Ltd.
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页码:1147 / 1166
页数:20
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