Robust numerical schemes for time delayed singularly perturbed parabolic problems with discontinuous convection and source terms

被引:0
|
作者
S. Priyadarshana
J. Mohapatra
H. Ramos
机构
[1] National Institute of Technology,Department of Mathematics
[2] Universidad de Salamanca,Scientific Computing Group and Escuela Politécnica Superior de Zamora
来源
Calcolo | 2024年 / 61卷
关键词
Singular perturbation; Time delay; Interior layer; Semilinear parabolic problem; Error analysis; 65M06; 65M12; 35K20; 35K58;
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摘要
This article deals with two different numerical approaches for solving singularly perturbed parabolic problems with time delay and interior layers. In both approaches, the implicit Euler scheme is used for the time scale. In the first approach, the upwind scheme is used to deal with the spatial derivatives whereas in the second approach a hybrid scheme is used, comprising the midpoint upwind scheme and the central difference scheme at appropriate domains. Both schemes are applied on two different layer resolving meshes, namely a Shishkin mesh and a Bakhvalov–Shishkin mesh. Stability and error analysis are provided for both schemes. The comparison is made in terms of the maximum absolute errors, rates of convergence, and the computational time required. Numerical outputs are presented in the form of tables and graphs to illustrate the theoretical findings.
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