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ADAPTIVE ADER METHODS USING KERNEL-BASED POLYHARMONIC SPLINE WENO RECONSTRUCTION

delete2010-01-01
delete42
PRE
AI
T
Terhemen Aboiyar *
E
Emmanuil H. Georgoulis
A
Armin Iske
DOI:10.1137/100792573delete
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Abstract

Abstract

En 中文
An adaptive ADER finite volume method on unstructured meshes is proposed. The method combines high order polyharmonic spline weighted essentially non-oscillatory (WENO) reconstruction with high order flux evaluation. Polyharmonic splines are utilized in the recovery step of the finite volume method yielding a WENO reconstruction that is stable, flexible, and optimal in the associated Sobolev (Beppo-Levi) space. The flux evaluation is accomplished by solving generalized Riemann problems across cell interfaces. The mesh adaptation is performed through an a posteriori error indicator, which relies on the polyharmonic spline reconstruction scheme. The performance of the proposed method is illustrated by a series of numerical experiments, including linear advection, Burgers's equation, Smolarkiewicz's deformational flow test, and the five-spot problem.
Keywords:
finite volume methods
ADER flux evaluation
WENO reconstruction
hyperbolic conservation laws
polyharmonic splines

Journal

SIAM Journal on Scientific Computing cover
SIAM Journal on Scientific Computing
IF:
2.6
Papers:
5.1K
Citations:
1.8W

Organization

U
university of hamburg
Scholars:
3.7W
Papers: 2.9W
Citations: 30
U
university of leicester
Scholars:
2.0W
Papers: 1.7W
Citations: 25
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