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The Sinh Transformation for Curved Elements Using the General Distance Function
Accurate numerical evaluation of the nearly singular boundary integrals is a major concerned issue in the implementation of boundary element method (BEM). In this paper, a general distance function independent on the nearly singular point is proposed. Combined with an iteration process, the position...
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Published in: | Computer modeling in engineering & sciences 2013, Vol.93 (2), p.113-131 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Online Access: | Get full text |
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Summary: | Accurate numerical evaluation of the nearly singular boundary integrals is a major concerned issue in the implementation of boundary element method (BEM). In this paper, a general distance function independent on the nearly singular point is proposed. Combined with an iteration process, the position of the nearly singular point can be obtained more easily. Then, an extended form of the sinh transformation using the general distance function, which automatically takes into account the intrinsic coordinate of the nearly singular point and the minimum distance from source point to the element in the intrinsic parameter plane, is developed to deal with the nearly singular integrals. The iterated sinh transformation can also be achieved in a straightforward fashion. Results obtained by the one and two iterations of sinh transformation for various orders of singularities demonstrate the high efficiency and accuracy of presented method. Comparisons with other variable transformation methods are also carried out to show the superiority of the presented method. |
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ISSN: | 1526-1492 1526-1506 |
DOI: | 10.3970/cmes.2013.093.113 |