Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
513401 | Engineering Analysis with Boundary Elements | 2008 | 11 Pages |
Abstract
Numerical solutions of the equal width wave (EW) equation are obtained by using a Galerkin method with quartic B-spline finite elements, a differential quadrature method with cosine expansion basis and a meshless method with radial-basis functions. Solitary wave motion, interaction of two solitary waves and wave undulation are studied to validate the accuracy and efficiency of the proposed methods. Comparisons are made with analytical solutions and those of some earlier papers. The accuracy and efficiency are discussed by computing the numerical conserved laws and L2L2, L∞L∞ error norms.
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Authors
Bülent Saka, İdris Dağ, Yılmaz Derelı˙, Alper Korkmaz,