Title of article :
The solitary wave solution of coupled Klein–Gordon–Zakharov equations via two different numerical methods Original Research Article
Author/Authors :
Mehdi Dehghan، نويسنده , , Ahmad Nikpour، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Abstract :
In this research, we propose two different methods to solve the coupled Klein–Gordon–Zakharov (KGZ) equations: the Differential Quadrature (DQ) and Globally Radial Basis Functions (GRBFs) methods. In the DQ method, the derivative value of a function with respect to a point is directly approximated by a linear combination of all functional values in the global domain. The principal work in this method is the determination of weight coefficients. We use two ways for obtaining these coefficients: cosine expansion (CDQ) and radial basis functions (RBFs-DQ), the former is a mesh-based method and the latter categorizes in the set of meshless methods. Unlike the DQ method, the GRBF method directly substitutes the expression of the function approximation by RBFs into the partial differential equation. The main problem in the GRBFs method is ill-conditioning of the interpolation matrix. Avoiding this problem, we study the bases introduced in Pazouki and Schaback (2011) . Some examples are presented to compare the accuracy and easy implementation of the proposed methods. In numerical examples, we concentrate on Inverse Multiquadric (IMQ) and second-order Thin Plate Spline (TPS) radial basis functions. The variable shape parameter (exponentially and random) strategies are applied in the IMQ function and the results are compared with the constant shape parameter.
Keywords :
Thin Plate Spline (TPS) , Differential quadrature method , Klein–Gordon–Zakharov (KGZ) equations , Radial basis functions (RBFs) , Inverse Multiquadric (IMQ)
Journal title :
Computer Physics Communications
Journal title :
Computer Physics Communications