High-order discontinuous element-based schemes for the inviscid shallow water equations: Spectral multidomain penalty and discontinuous Galerkin methods

被引:9
|
作者
Escobar-Vargas, J. A. [1 ]
Diamessis, P. J. [1 ]
Giraldo, F. X. [2 ]
机构
[1] Cornell Univ, Sch Civil & Environm Engn, Ithaca, NY 14853 USA
[2] USN, Postgrad Sch, Dept Appl Math, Monterey, CA 93943 USA
基金
美国国家科学基金会;
关键词
Shallow water equations; Spectral multidomain methods; Discontinuous Galerkin methods; Interfacial treatment; NAVIER-STOKES EQUATIONS; HYPERBOLIC-EQUATIONS; MODEL; NUMBER; CONSERVATION; CONVERGENCE; COMPUTATION;
D O I
10.1016/j.amc.2011.10.046
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
Two commonly used types of high-order-accuracy element-based schemes, collocation-based spectral multidomain penalty methods (SMPM) and nodal discontinuous Galerkin methods (DGM), are compared in the framework of the inviscid shallow water equations. Differences and similarities in formulation are identified, with the primary difference being the dissipative term in the Rusanov form of the numerical flux for the DGM that provides additional numerical stability; however, it should be emphasized that to arrive at this equivalence between SMPM and DGM requires making specific choices in the construction of both methods; these choices are addressed. In general, both methods offer a multitude of choices in the penalty terms used to introduce boundary conditions and stabilize the numerical solution. The resulting specialized class of SMPM and DGM are then applied to a suite of six commonly considered geophysical flow test cases, three linear and three non-linear; we also include results for a classical continuous Galerkin (i.e., spectral element) method for comparison. Both the analysis and numerical experiments show that the SMPM and DGM are essentially identical; both methods can be shown to be equivalent for very special choices of quadrature rules and Riemann solvers in the DGM along with special choices in the type of penalty term in the SMPM. Although we only focus our studies on the inviscid shallow water equations the results presented should be applicable to other systems of nonlinear hyperbolic equations (such as the compressible Euler equations) and extendable to the compressible and incompressible Navier-Stokes equations, where viscous terms are included. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:4825 / 4848
页数:24
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