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Weak Entropy Boundary Conditions for Isentropic Gas Dynamics via Kinetic Relaxation
Authors:F Berthelin  F Bouchut
Institution:
  • a Département de Mathématiques, Université d'Orléans, UMR 6628, BP 6759, 45067, Orléans cedex 2, Francef1florent.berthelin@labomath.univ-orleans.frf1
  • b Département de Mathématiques et Applications, Ecole Normale Supérieure et CNRS, UMR 8553, 45, rue d'Ulm, 75230, Paris cedex 05, Francef2francois.bouchut@ens.frf2
  • Abstract:We consider a kinetic BGK model relaxing to isentropic gas dynamics previously introduced by the authors, but with Dirichlet boundary condition on the incoming velocities. We pass to the limit as the relaxation parameter tends to zero by compensated compactness inside the domain, and obtain that the limit satisfies entropy inequalities on the boundary involving weak traces of entropy fluxes. Our method is very general and could be applied to any entropy satisfying BGK model as soon as we have strong compactness of the macroscopic variables inside the domain.
    Keywords:entropy boundary conditions  isentropic gas dynamics  kinetic BGK model  kinetic entropy  kinetic invariant domain  relaxation limit  weak trace  
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