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Using K-branch entropy solutions for multiphase geometric optics computations

Academic Article
Publication Date:
2002
abstract:
This paper is devoted to a numerical simulation of the classical WKB system arising in geometric optics expansions. It contains the nonlinear eikonal equation and a linear conservation law whose coefficient can be discontinuous. We address the problem of treating it in such a way superimposed signals can be reproduced by means of the kinetic formulation of ``multibranch solutions'' originally due to Brenier and Corrias. Some existence and uniqueness results are given together with computational test-cases of increasing difficulty displaying up to five multivaluations.
Iris type:
01.01 Articolo in rivista
Keywords:
WKb asymptotics; kinetic formulation; moment method; paraxial problems; multivalued solution
List of contributors:
Gosse, Laurent
Authors of the University:
GOSSE LAURENT
Handle:
https://iris.cnr.it/handle/20.500.14243/150890
Published in:
JOURNAL OF COMPUTATIONAL PHYSICS
Journal
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