Numerical Method of the Line for Solving One Dimensional Initial- Boundary Singularly Perturbed Burger Equation

Author:

Aliyi Kedir1,Muleta Hailu2

Affiliation:

1. Department of Mathematics, College of Natural and Computational Sciences, Ambo University, Ambo, Ethiopia.

2. Department of mathematics, College of Natural sciences, Jimma University, Jimma, Ethiopia.

Abstract

In this Research Method of Line is used to find the approximation solution of one dimensional singularly perturbed Burger equation given with initial and boundary conditions. First, the given solution domain is discretized and the derivative involving the spatial variable x is replaced into the functional values at each grid points by using the central finite difference method. Then, the resulting first-order linear ordinary differential equation is solved by the fifth-order Runge-Kutta method. To validate the applicability of the proposed method, one model example is considered and solved for different values of the perturbation parameter ‘  ’ and mesh sizes in the direction of the temporal variable, t. Numerical results are presented in tables in terms of Maximum point-wise error, N t , E  and rate of convergence, N t , P  . The stability of this new class of Numerical method is also investigated by using Von Neumann stability analysis techniques. The numerical results presented in tables and graphs confirm that the approximate solution is in good agreement with the exact solution.

Publisher

Lattice Science Publication (LSP)

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