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An adaptive mesh-moving and refinement procedure for one-dimensional conservation lawsWe examine the performance of an adaptive mesh-moving and /or local mesh refinement procedure for the finite difference solution of one-dimensional hyperbolic systems of conservation laws. Adaptive motion of a base mesh is designed to isolate spatially distinct phenomena, and recursive local refinement of the time step and cells of the stationary or moving base mesh is performed in regions where a refinement indicator exceeds a prescribed tolerance. These adaptive procedures are incorporated into a computer code that includes a MacCormack finite difference scheme wih Davis' artificial viscosity model and a discretization error estimate based on Richardson's extrapolation. Experiments are conducted on three problems in order to qualify the advantages of adaptive techniques relative to uniform mesh computations and the relative benefits of mesh moving and refinement. Key results indicate that local mesh refinement, with and without mesh moving, can provide reliable solutions at much lower computational cost than possible on uniform meshes; that mesh motion can be used to improve the results of uniform mesh solutions for a modest computational effort; that the cost of managing the tree data structure associated with refinement is small; and that a combination of mesh motion and refinement reliably produces solutions for the least cost per unit accuracy.
Document ID
19950028520
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Biswas, Rupak
(RIACS, Moffett Field, CA United States)
Flaherty, Joseph E.
(Rensselaer Polytech. Inst. Troy, NY, United States)
Arney, David C.
(U.S. Military Acad., West Point, NY United States)
Date Acquired
August 16, 2013
Publication Date
January 1, 1993
Publication Information
Publication: Applied Numerical Mathematics
ISSN: 0168-9274
Subject Category
Computer Programming And Software
Accession Number
95A60119
Funding Number(s)
CONTRACT_GRANT: AFOSR90-0194
CONTRACT_GRANT: DAAL03-91-G-0215
CONTRACT_GRANT: CDA-8805910
Distribution Limits
Public
Copyright
Other

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