Computing Qualitatively Correct Approximations of Balance Laws : ExponentialFit, WellBalanced and AsymptoticPreserving
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The work Computing Qualitatively Correct Approximations of Balance Laws : ExponentialFit, WellBalanced and AsymptoticPreserving represents a distinct intellectual or artistic creation found in University of Missouri Libraries. This resource is a combination of several types including: Work, Language Material, Books.
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Computing Qualitatively Correct Approximations of Balance Laws : ExponentialFit, WellBalanced and AsymptoticPreserving
Resource Information
The work Computing Qualitatively Correct Approximations of Balance Laws : ExponentialFit, WellBalanced and AsymptoticPreserving represents a distinct intellectual or artistic creation found in University of Missouri Libraries. This resource is a combination of several types including: Work, Language Material, Books.
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 Computing Qualitatively Correct Approximations of Balance Laws : ExponentialFit, WellBalanced and AsymptoticPreserving
 Title remainder
 ExponentialFit, WellBalanced and AsymptoticPreserving
 Language
 eng
 Summary
 Substantial effort has been drawn for years onto the development of (possibly highorder) numerical techniques for the scalar homogeneous conservation law, an equation which is strongly dissipative in L1 thanks to shock wave formation. Such a dissipation property is generally lost when considering hyperbolic systems of conservation laws, or simply inhomogeneous scalar balance laws involving accretive or spacedependent source terms, because of complex wave interactions. An overall weaker dissipation can reveal intrinsic numerical weaknesses through specific nonlinear mechanisms: Hugoniot curve
 Cataloging source
 MEAUC
 Dewey number
 620.11232
 Index
 index present
 LC call number
 QA931 .G384 2013
 Literary form
 non fiction
 Nature of contents

 dictionaries
 bibliography
 Series statement
 SIMAI Springer Series
 Series volume
 v. 2
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