Numerical schemes for a multi-species BGK model with velocity-dependent collision frequency

Haack, Jeff; Hauck, Cory; Klingenberg, Christian; Pirner, Marlies; Warnecke, Sandra

Research article (journal) | Peer reviewed

Abstract

We consider a kinetic description of multi-species gas mixture modeled with Bhatnagar-Gross-Krook (BGK) collision operators, in which the collision frequency varies not only in time and space but also with the microscopic velocity. In this model, the Maxwellians typically used in standard BGK operators are replaced by a generalization of such target functions, which are defined by a variational procedure [20]. In this paper we present a numerical method for simulating this model, which uses an Implicit-Explicit (IMEX) scheme to minimize a certain potential function, mimicking the Lagrange functional that appears in the theoretical derivation. We show that theoretical properties such as conservation of mass, total momentum and total energy as well as positivity of the distribution functions are preserved by the numerical method, and illustrate its usefulness and effectiveness with numerical examples.

Details about the publication

JournalJournal of Computational Physics (J. Comput. Phys.)
Volume473
Article number111729
StatusPublished
Release year2022
DOI10.1016/j.jcp.2022.111729
Link to the full texthttps://arxiv.org/abs/2202.05652
KeywordsBGK model; gas mixtures; velocity dependent collision frequency; numerical scheme, entropy minimization

Authors from the University of Münster

Pirner, Marlies
Juniorprofessur für Angewandte Mathematik (Prof. Pirner)