Improved non-singular local boundary integral equation method |
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Authors: | Fu Dong-jie Chen Hai-bo Zhang Pei-qiang |
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Affiliation: | Department of Modern Mechanics, University of Science and Technology of China Hefei 230026, P. R. China;CAS Key Laboratory of Mechanical Behavior and Design of Materials, University of Science and Technology of China, Hefei 230026, P. R. China |
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Abstract: | When the source nodes are on the global boundary in the implementation of local boundary integral equation method (LBIEM),singularities in the local boundary integrals need to be treated specially. In the current paper,local integral equations are adopted for the nodes inside the domain trod moving least square approximation (MLSA) for the nodes on the global boundary,thus singularities will not occur in the new al- gorithm.At the same time,approximation errors of boundary integrals are reduced significantly.As applications and numerical tests,Laplace equation and Helmholtz equa- tion problems are considered and excellent numerical results are obtained.Furthermore, when solving the Hehnholtz problems,the modified basis functions with wave solutions are adapted to replace the usually-used monomial basis functions.Numerical results show that this treatment is simple and effective and its application is promising in solutions for the wave propagation problem with high wave number. |
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Keywords: | meshless method local boundary integral equation method moving least square approximation singular integrals |
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