Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11023898 | Journal of Computational Physics | 2019 | 20 Pages |
Abstract
We study the performance of the MLSDC-SH scheme with shallow-water test cases commonly used in numerical atmospheric modeling. We use this suite of test cases, which gradually adds more complexity to the nonlinear system of governing partial differential equations, to perform a detailed analysis of the accuracy of MLSDC-SH upon refinement in time. We illustrate the stability properties of MLSDC-SH and show that the proposed scheme achieves up to eighth-order convergence in time. Finally, we study the conditions in which MLSDC-SH achieves its theoretical speedup, and we show that it can significantly reduce the computational cost compared to single-level Spectral Deferred Corrections (SDC).
Keywords
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Physical Sciences and Engineering
Computer Science
Computer Science Applications
Authors
François P. Hamon, Martin Schreiber, Michael L. Minion,