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Nonstandard Finite Difference Schemes: Relations Between Time and Space Step-Sizes in Numerical Schemes for PDE's That Follow from Positivity ConditionA large class of physical phenomena can be modeled by evolution and wave type Partial Differential Equations (PDE). Few of these equations have known explicit exact solutions. Finite-difference techniques are a popular method for constructing discrete representations of these equations for the purpose of numerical integration. However, the solutions to the difference equations often contain so called numerical instabilities; these are solutions to the difference equations that do not correspond to any solution of the PDE's. For explicit schemes, the elimination of this behavior requires functional relations to exist between the time and space steps-sizes. We show that such functional relations can be obtained for certain PDE's by use of a positivity condition. The PDE's studied are the Burgers, Fisher, and linearized Euler equations.
Document ID
19960052331
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Mickens, Ronald E.
(Atlanta Univ. GA United States)
Date Acquired
August 17, 2013
Publication Date
July 1, 1996
Publication Information
Publication: HBCU's Research Conference Agenda and Abstracts
Subject Category
Numerical Analysis
Report/Patent Number
Paper-35
Accession Number
96N35528
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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