A Semi-Implicit Fully Exactly Well-Balanced Relaxation Scheme for the Shallow Water System

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-31 DOI:10.1137/23m1621289
Celia Caballero-Cárdenas, Manuel Jesús Castro, Christophe Chalons, Tomás Morales de Luna, María Luz Muñoz-Ruiz
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Abstract

SIAM Journal on Scientific Computing, Volume 46, Issue 4, Page A2503-A2527, August 2024.
Abstract. This article focuses on the design of semi-implicit schemes that are fully well-balanced for the one-dimensional shallow water equations, that is, schemes that preserve all smooth steady states of the system and not just water-at-rest equilibria. The proposed methods outperform standard explicit schemes in the low-Froude regime, where the celerity is much larger than the fluid velocity, eliminating the need for a large number of iterations on large time intervals. In this work, splitting and relaxation techniques are combined in order to obtain fully well-balanced semi-implicit first and second order schemes. In contrast to recent Lagrangian-based approaches, this one allows the preservation of all the steady states while avoiding the complexities associated with Lagrangian formalism.
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浅水系统的半隐式完全精确均衡松弛方案
SIAM 科学计算期刊》,第 46 卷第 4 期,第 A2503-A2527 页,2024 年 8 月。 摘要本文主要研究一维浅水方程的完全平衡半隐式方案设计,即保留系统的所有平稳状态而不仅仅是水静止平衡状态的方案。在流速远大于流体速度的低弗罗德系统中,所提出的方法优于标准显式方案,从而无需在大时间间隔内进行大量迭代。在这项工作中,为了获得完全平衡的半隐式一阶和二阶方案,我们结合了分裂和松弛技术。与最新的基于拉格朗日的方法相比,这种方法可以保留所有稳态,同时避免与拉格朗日形式主义相关的复杂性。
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CiteScore
7.20
自引率
4.30%
发文量
567
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