Flux and traction boundary elements without hypersingular or strongly singular integrals

Citation
J. Dominguez et al., Flux and traction boundary elements without hypersingular or strongly singular integrals, INT J NUM M, 48(1), 2000, pp. 111-135
Citations number
29
Categorie Soggetti
Engineering Mathematics
Journal title
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING
ISSN journal
00295981 → ACNP
Volume
48
Issue
1
Year of publication
2000
Pages
111 - 135
Database
ISI
SICI code
0029-5981(20000510)48:1<111:FATBEW>2.0.ZU;2-M
Abstract
The present paper deals with a boundary element formulation based on the tr action elasticity boundary integral equation (potential derivative for Lapl ace's problem). The hypersingular and strongly singular integrals appearing in the formulation are analytically transformed to yield line and surface integrals which are at most weakly singular. Regularization and analytical transformation of the boundary integrals is done prior to any boundary disc retization. The integration process does not require any change of co-ordin ates and the resulting integrals can be numerically evaluated in a simple a nd efficient way. The formulation presented is completely general and valid for arbitrary shaped open or closed boundaries. Analytical expressions for all the required hypersingular or strongly singular integrals are given in the paper. To fulfil the continuity requirement over the primary density a simple BE discretization strategy is adopted. Continuous elements are used whereas the collocation points are shifted towards the interior of the ele ments. This paper pretends to contribute to the transformation of hypersing ular boundary element formulations as something clear, general and easy to handle similar to in the classical formulation. Copyright (C) 2000 John Wil ey & Sons, Ltd.