KINETIC/FLUID MICRO-MACRO NUMERICAL SCHEME FOR A TWO COMPONENT GAS MIXTURES - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal Année : 2020

KINETIC/FLUID MICRO-MACRO NUMERICAL SCHEME FOR A TWO COMPONENT GAS MIXTURES

Résumé

This work is devoted to the numerical simulation of the BGK equation for two species in the fluid limit using a particle method. Thus, we are interested in a gas mixture consisting of two species without chemical reactions assuming that the number of particles of each species remains constant. We consider the kinetic two species model proposed by Klingenberg, Pirner and Puppo [KRM 2017], which separates the intra and interspecies collisions. We want to study numerically the influence of the two relaxation term, one corresponding to intra, the other to interspecies collisions. For this, we use the method of micro-macro decomposition. First, we derive an equivalent model based on the micro-macro decomposition (see Bennoune, Lemou and Mieussens [JCP 2008] and Crestetto, Crouseilles and Lemou [KRM 2012]). The kinetic micro part is solved by a particle method, whereas the fluid macro part is discretized by a standard finite volume scheme. Main advantages of this approach are: (i) the noise inherent to the particle method is reduced compared to a standard (without micro-macro decomposition) particle method, (ii) the computational cost of the method is reduced in the fluid limit since a small number of particles is then sufficient.
Fichier principal
Vignette du fichier
MiMa_2Species.pdf (6.59 Mo) Télécharger le fichier
Origine : Fichiers produits par l'(les) auteur(s)
Loading...

Dates et versions

hal-02495669 , version 1 (02-03-2020)

Identifiants

  • HAL Id : hal-02495669 , version 1

Citer

Anaïs Crestetto, Christian Klingenberg, Marlies Pirner. KINETIC/FLUID MICRO-MACRO NUMERICAL SCHEME FOR A TWO COMPONENT GAS MIXTURES. Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal, 2020, 18 (2). ⟨hal-02495669⟩
75 Consultations
25 Téléchargements

Partager

Gmail Facebook X LinkedIn More