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Research Article | Open Access

Stability analysis and convergence rate of a two-step predictor-corrector approach for shallow water equations with source terms

Rubayyi T. Alqahtani1Jean C. Ntonga2Eric Ngondiep1,2( )
Department of Mathematics and Statistics, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), 90950 Riyadh 11632, Saudi Arabia
Hydrological Research Centre, Institute for Geological and Mining Research, 4110 Yaounde-Cameroon
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Abstract

This paper deals with a two-step explicit predictor-corrector approach so-called the two-step MacCormack formulation, for solving the one-dimensional nonlinear shallow water equations with source terms. The proposed two-step numerical scheme uses the fractional steps procedure to treat the friction slope and to upwind the convection term in order to control the numerical oscillations and stability. The developed scheme uses both forward and backward difference formulations in the predictor and corrector steps, respectively. The linear stability of the constructed technique is deeply analyzed using the Von Neumann stability approach whereas the convergence rate of the proposed method is numerically obtained in the L 2 -norm. A wide set of numerical examples confirm the theoretical results.

CLC number: 70K20, 35F61, 65M12, 93C20, 65M06, 93B18

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AIMS Mathematics
Pages 9265-9289

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Cite this article:
Alqahtani RT, Ntonga JC, Ngondiep E. Stability analysis and convergence rate of a two-step predictor-corrector approach for shallow water equations with source terms. AIMS Mathematics, 2023, 8(4): 9265-9289. https://doi.org/10.3934/math.2023465

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Received: 24 December 2022
Revised: 24 January 2023
Accepted: 01 February 2023
Published: 15 April 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)