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Systematic formulation of a general numerical framework for solving the two-dimensional convection–diffusion–reaction system

Publication Type : Journal Article

Source : Journal International Journal of Nonlinear Sciences and Numerical Simulation, 2021

Url : https://www.degruyter.com/document/doi/10.1515/ijnsns-2019-0231/html

Keywords : Brusselator model, Burgers’ equation, convection–diffusion–reaction system, differential quadrature method, finite difference method

Campus : Coimbatore

Verified : No

Year : 2021

Abstract : A general numerical framework is designed for the two-dimensional convection–diffusion–reaction (CDR) system. The compatibility of differential quadrature and finite difference methods (FDM) are utilized for the formulation. The idea is to switch one numerical scheme to another numerical scheme without changing the formulation. The only requirement is to input the weighting coefficients associated with the derivative discretizations to the general algorithm. Three numerical schemes comprising combinations of differential quadrature and FDMs are studied using the general algorithm. Properties of numerical schemes and the algorithm are analyzed by using the simulations of two-dimensional linear CDR system, Burgers’ equation, and Brusselator model.

Cite this Research Publication : Aswin VS, and Ashish Awasthi. "Systematic formulation of a general numerical framework for solving the two-dimensional convection–diffusion–reaction system." International Journal of Nonlinear Sciences and Numerical Simulation 22.7-8 (2021): 843-859.

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