Numerical study of Fisher's reaction–diffusion equation by the Sinc collocation method

作者:

Highlights:

摘要

Fisher's equation, which describes a balance between linear diffusion and nonlinear reaction or multiplication, is studied numerically by the Sinc collocation method. The derivatives and integrals are replaced by the necessary matrices, and a system of algebraic equations is obtained to approximate solution of the problem. The error in the approximation of the solution is shown to converge at an exponential rate. Numerical examples are given to illustrate the accuracy and the implementation of the method, the results show that any local initial disturbance can propagate with a constant limiting speed when time becomes sufficiently large. Both the limiting wave fronts and the limiting speed are independent of the initial values.

论文关键词:35K55,35K57,35A40,Nonlinear parabolic equation,Reaction–diffusion equations,Fisher's equation

论文评审过程:Received 29 November 1999, Revised 12 October 2000, Available online 16 October 2001.

论文官网地址:https://doi.org/10.1016/S0377-0427(01)00356-9