Analysis of the SBP-SAT Stabilization for Finite Element Methods Part I: Linear Problems

被引:32
作者
Abgrall, R. [1 ]
Nordstrom, J. [2 ,3 ]
Oeffner, P. [1 ,4 ]
Tokareva, S. [5 ]
机构
[1] Univ Zurich, Inst Math, Winterthurerstr 190, CH-8057 Zurich, Switzerland
[2] Linkoping Univ, Dept Math, Computat Math, S-58183 Linkoping, Sweden
[3] Univ Johannesburg, Dept Math & Appl Math, POB 524, ZA-2006 Auckland Pk, South Africa
[4] Johannes Gutenberg Univ Mainz, Inst Math, Staudingerweg 9, D-55099 Mainz, Germany
[5] Los Alamos Natl Lab, Theoret Div, Appl Math & Plasma Phys Grp T 5, Los Alamos, NM 87545 USA
关键词
Continuous Galerkin; Stability; Simultaneous approximation terms; Initial-boundary value problem; Hyperbolic conservation laws; DISCONTINUOUS GALERKIN METHODS; NAVIER-STOKES EQUATIONS; BOUNDARY-CONDITIONS; SCHEMES; OPERATORS; DISCRETIZATION; APPROXIMATIONS; DYNAMICS; SYSTEMS;
D O I
10.1007/s10915-020-01349-z
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
In the hyperbolic community, discontinuous Galerkin (DG) approaches are mainly applied when finite element methods are considered. As the name suggested, the DG framework allows a discontinuity at the element interfaces, which seems for many researchers a favorable property in case of hyperbolic balance laws. On the contrary, continuous Galerkin methods appear to be unsuitable for hyperbolic problems and there exists still the perception that continuous Galerkin methods are notoriously unstable. To remedy this issue, stabilization terms are usually added and various formulations can be found in the literature. However, this perception is not true and the stabilization terms are unnecessary, in general. In this paper, we deal with this problem, but present a different approach. We use the boundary conditions to stabilize the scheme following a procedure that are frequently used in the finite difference community. Here, the main idea is to impose the boundary conditions weakly and specific boundary operators are constructed such that they guarantee stability. This approach has already been used in the discontinuous Galerkin framework, but here we apply it with a continuous Galerkin scheme. No internal dissipation is needed even if unstructured grids are used. Further, we point out that we do not need exact integration, it suffices if the quadrature rule and the norm in the differential operator are the same, such that the summation-by-parts property is fulfilled meaning that a discrete Gauss Theorem is valid. This contradicts the perception in the hyperbolic community that stability issues for pure Galerkin scheme exist. In numerical simulations, we verify our theoretical analysis.
引用
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页数:29
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