Reproducing polynomial particle methods for boundary integral equations

  • Oh, Hae-Soo
  • Davis, Christopher
  • Kim, June G.
  • Kwon, YongHoon
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초록

Since meshless methods have been introduced to alleviate the difficulties arising in conventional finite element method, many papers on applications of meshless methods to boundary element method have been published. However, most of these papers use moving least squares approximation functions that have difficulties in prescribing essential boundary conditions. Recently, in order to strengthen the effectiveness of meshless methods, Oh et al. developed meshfree reproducing polynomial particle (RPP) shape functions, patchwise RPP and reproducing singularity particle (RSP) shape functions with use of flat-top partition of unity. All of these approximation functions satisfy the Kronecker delta property. In this paper, we report that meshfree RPP shape functions, patchwise RPP shape functions, and patchwise RSP shape functions effectively handle boundary integral equations with (or without) domain singularities.

키워드

The closed form reproducing polynomial particle (RPP) shape functionsReproducing kernel particle (RKP) shape functionsBoundary element method (BEM)FINITE-ELEMENT SOLUTIONSSHAPE FUNCTIONSPOTENTIAL PROBLEMSNODE METHODSINGULARITIESPARTITIONUNITY
제목
Reproducing polynomial particle methods for boundary integral equations
저자
Oh, Hae-SooDavis, ChristopherKim, June G.Kwon, YongHoon
DOI
10.1007/s00466-011-0581-x
발행일
2011-07
유형
Article
저널명
Computational Mechanics
48
1
페이지
27 ~ 45