Modelling and numerical approximation for the nonconservative bitemperature Euler model
BRULL, Stéphane
Équipe Calcul scientifique et Modélisation
Institut de Mathématiques de Bordeaux [IMB]
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Équipe Calcul scientifique et Modélisation
Institut de Mathématiques de Bordeaux [IMB]
BRULL, Stéphane
Équipe Calcul scientifique et Modélisation
Institut de Mathématiques de Bordeaux [IMB]
Équipe Calcul scientifique et Modélisation
Institut de Mathématiques de Bordeaux [IMB]
ESTIBALS, Elise
Contrôle du plAsma et de ses inSTabilités, Optimisation et Réduction de modèle [CASTOR]
< Reduce
Contrôle du plAsma et de ses inSTabilités, Optimisation et Réduction de modèle [CASTOR]
Language
en
Article de revue
This item was published in
ESAIM: Mathematical Modelling and Numerical Analysis. 2018, vol. 52, n° 4, p. 1353-1383
EDP Sciences
English Abstract
This paper is devoted to the study of the nonconservative bitemperature Euler system. We firstly introduce an underlying two species kinetic model coupled with the Poisson equation. The bitemperature Euler system is then ...Read more >
This paper is devoted to the study of the nonconservative bitemperature Euler system. We firstly introduce an underlying two species kinetic model coupled with the Poisson equation. The bitemperature Euler system is then established from this kinetic model according to an hydrodynamic limit. A dissipative entropy is proved to exist and a solution is defined to be admissible if it satisfies the related dissipation property. Next, four different numerical methods are presented. Firstly, the kinetic model gives rise to kinetic schemes for the fluid system. The second approach belongs to the family of the discrete BGK schemes introduced by Aregba-Driollet and Natalini. Finally, a quasi-linear relaxation approach and a Lagrange-remap scheme are considered. 1991 Mathematics Subject Classification. 65M08, 35L60, 35L65. Secondary: 82D10, 76X05. The dates will be set by the publisher.Read less <
English Keywords
nonconservative hyperbolic system
entropy dissipation
Relaxation method
hydrodynamic limit
kinetic schemes
BGK models
Origin
Hal imported