A BGK relaxation model for polyatomic gas mixtures

From MaRDI portal
Publication:259349

DOI10.4310/CMS.2016.V14.N2.A1zbMath1332.82074OpenAlexW2628716208MaRDI QIDQ259349

Maria José Cáceres, Marzia Bisi

Publication date: 11 March 2016

Published in: Communications in Mathematical Sciences (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.4310/cms.2016.v14.n2.a1




Related Items (21)

A consistent BGK model with velocity-dependent collision frequency for gas mixturesA BGK model for mixtures of monoatomic and polyatomic gases with discrete internal energyOn the Maxwell-Stefan diffusion limit for a reactive mixture of polyatomic gases in non-isothermal settingOn kinetic models for polyatomic gases and their hydrodynamic limitsExistence, uniqueness and positivity of solutions for BGK models for mixturesOn a positive decomposition of entropy production functional for the polyatomic BGK modelBGK Model for Two-Component Gases Near a Global MaxwellianA two-temperature six-moment approach to the shock wave problem in a polyatomic gasThe BGK equation as the limit of an \(N\)-particle systemOn the Chapman-Enskog asymptotics for a mixture of monoatomic and polyatomic rarefied gasesA general consistent BGK model for gas mixturesHypocoercivity for a BGK model for gas mixturesBGK model of the multi-species Uehling-Uhlenbeck equationA BGK model for reactive mixtures of polyatomic gases with continuous internal energyHydrodynamic limits of kinetic equations for polyatomic and reactive gasesOn modified simple reacting spheres kinetic model for chemically reactive gasesA BGK model for high temperature rarefied gas flowsAn ES-BGK model for polyatomic gases in rotational and vibrational nonequilibriumEllipsoidal BGK model near a global Maxwellian in the whole spaceAn ES-BGK model for diatomic gases with correct relaxation rates for internal energiesA kinetic BGK relaxation model for a reacting mixture of polyatomic gases







This page was built for publication: A BGK relaxation model for polyatomic gas mixtures