On well-balanced implicit-explicit Lagrange-projection schemes for two-layer shallow water equations

•Two-layer shallow water equations in Lagrangian coordinates.•Implicit-explicit well-balanced Lagrange-projection schemes.•Well-balanced approximate Riemann solver based on a relaxation approach.•Numerical simulations in subsonic regimes for two-layer flows. This works concerns the study of well-bal...

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Veröffentlicht in:Applied mathematics and computation 2023-04, Vol.442, p.127702, Article 127702
Hauptverfasser: Del Grosso, A., Castro Díaz, M., Chalons, C., Morales de Luna, T.
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Sprache:eng
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Zusammenfassung:•Two-layer shallow water equations in Lagrangian coordinates.•Implicit-explicit well-balanced Lagrange-projection schemes.•Well-balanced approximate Riemann solver based on a relaxation approach.•Numerical simulations in subsonic regimes for two-layer flows. This works concerns the study of well-balanced Lagrange-projection schemes applied to the two-layer shallow water system. In particular, a formulation of the mathematical model in Lagrangian coordinates is proposed. The HLL method is then applied to a simplified version of the resulting Lagrangian system. Furthermore, based on the acoustic-transport splitting interpretation, another approximate Riemann solver for the acoustic-Lagrangian step is described. Both an explicit and an implicit-explicit method are proposed, where the latter can allow very fast simulations in sub-critical regimes. Finally, we show numerical simulations in which the outputs are compared with the IFCP method’s results.
ISSN:0096-3003
1873-5649
DOI:10.1016/j.amc.2022.127702