Reducing Numerical Artifacts by Sacrificing Well-Balance for Rotating Shallow-Water Flow
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-40860-1_19
Reference11 articles.
1. Brodtkorb, A., Holm, H.: Coastal ocean forecasting on the GPU using a two-dimensional finite-volume scheme. Tellus A. 73(1), 1–22 (2021)
2. Chertock, A., Dudzinski, M., Kurganov, A., Lukácová-Medvidová, M.: Well-balanced schemes for the shallow water equations with Coriolis forces. Numer. Math. 138(4), 939–973 (2017)
3. Kurganov, A., Noelle, S., Petrova, G.: Semidiscrete central-upwind schemes for hyperbolic conservation laws and Hamilton-Jacobi equations. SIAM J. Sci. Comput. 23(3), 707–740 (2001)
4. Kurganov, A., Petrova, G.: A second-order well-balanced positivity preserving central-upwind scheme for the Saint-Venant system. Commun. Math. Sci. 5(1), 133–160, 03 (2007)
5. Gottlieb, S., Shu, C.-W.: Total variation diminishing Runge-Kutta schemes. Math. Comput. 67(221), 73–85 (1998)
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