Title
A Cartesian Grid Based Tailored Finite Point Method For Reaction-Diffusion Equation On Complex Domains
Abstract
This paper presents a Cartesian grid based tailored finite point method (TFPM) for singularly perturbed reaction diffusion equation on complex domains. The method is incorporated with the kernel-free boundary integral algorithm, where the semi-discrete boundary value problems after time integration are reformulated into corresponding Fredholm boundary integral equations (BIEs) of the second kind, however with no algorithmic dependence on the exact analytical expression for the kernels of integrals. The BIEs are iteratively solved by the GMRES method while integral evaluation during each iteration resorts to solving an equivalent interface problem, which in practice is achieved by a series of manipulations in the framework of TFPM including discretization, correction, solution, and interpolation. The proposed method has second-order accuracy for the reaction-diffusion equation as demonstrated by the numerical examples.
Year
DOI
Venue
2021
10.1016/j.camwa.2021.05.020
COMPUTERS & MATHEMATICS WITH APPLICATIONS
Keywords
DocType
Volume
Reaction-diffusion equation, Singularly perturbed, Kernel-free boundary integral method, Tailored finite point method, Interface problem
Journal
97
ISSN
Citations 
PageRank 
0898-1221
0
0.34
References 
Authors
0
3
Name
Order
Citations
PageRank
Yaning Xie100.34
Zhongyi Huang26712.67
Wenjun Ying300.34