Linear B-spline finite element method for the improved Boussinesq equation

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摘要

In this paper, we develop and validate a numerical procedure for solving a class of initial boundary value problems for the improved Boussinesq equation. The finite element method with linear B-spline basis functions is used to discretize the nonlinear partial differential equation in space and derive a second order system involving only ordinary derivatives. It is shown that the coefficient matrix for the second order term in this system is invertible. Consequently, for the first time, the initial boundary value problem can be reduced to an explicit initial value problem to which many accurate numerical methods are readily applicable. Various examples are presented to validate this technique and demonstrate its capacity to simulate wave splitting, wave interaction and blow-up behavior.

论文关键词:Improved Boussinesq equation,Galerkin method,Finite element method,Soliton solution

论文评审过程:Received 13 October 2007, Revised 23 April 2008, Available online 5 June 2008.

论文官网地址:https://doi.org/10.1016/j.cam.2008.05.049