In this work we present a new model of BGK type for polyatomic gases. The model incorporates the different relaxation rates of translational, rotational and/or vibrational modes characterizing polyatomic molecules using a BGK-type equation, and additional relaxation equations for the temperatures associated to each internal energy mode. We construct an efficient numerical scheme which is implicit in the relaxation terms, and test the model and the scheme on several problems, confirming the Asymptotic Preserving properties of the scheme, and comparing the results provided by the model with experimental and DSMC simulations, carried out on the full Boltzmann polyatomic equation
The modeling of gas flows as for re-entry vehicles or jet plume expansion faces a large range of the...
International audienceWe propose two models of the Boltzmann equation (BGK and Fokker-Planck models)...
A BGK‐type model for a reactive multicomponent gas undergoing chemical bimolecular reactions is here...
We present a BGK approximation of a kinetic Boltzmann model for a mixture of polyatomic gases, in wh...
We consider the Bathnagar–Gross–Krook (BGK) model, an approximation of the Boltzmann equation, descr...
We consider the Bathnagar–Gross–Krook (BGK) model, an approximation of the Boltzmann equation, descr...
We propose an extension of the Ellipsoidal-Statistical BGK model to account for discrete levels of v...
This minicourse contains a description of recent results on the modelling of rarefied gases in weakl...
International audienceWe propose an extension of the Ellipsoidal-Statistical BGK model to account fo...
We propose an extension of the Ellipsoidal-Statistical BGK model to account for discrete levels of v...
High temperature gases, for instance in hypersonic reentry flows, show complex phenomena like excita...
Multi-species BGK models describe the dynamics of rarefied gases with constituent particles of diffe...
A kinetic model of the Boltzmann equation for non-vibrating polyatomic gases is proposed, based on t...
A multispeed discrete‐velocity molecular model of a rarefied gas is developed which permits quantita...
Versão dos autores para esta publicação.In this paper we derive a BGK relaxation model for a mixture...
The modeling of gas flows as for re-entry vehicles or jet plume expansion faces a large range of the...
International audienceWe propose two models of the Boltzmann equation (BGK and Fokker-Planck models)...
A BGK‐type model for a reactive multicomponent gas undergoing chemical bimolecular reactions is here...
We present a BGK approximation of a kinetic Boltzmann model for a mixture of polyatomic gases, in wh...
We consider the Bathnagar–Gross–Krook (BGK) model, an approximation of the Boltzmann equation, descr...
We consider the Bathnagar–Gross–Krook (BGK) model, an approximation of the Boltzmann equation, descr...
We propose an extension of the Ellipsoidal-Statistical BGK model to account for discrete levels of v...
This minicourse contains a description of recent results on the modelling of rarefied gases in weakl...
International audienceWe propose an extension of the Ellipsoidal-Statistical BGK model to account fo...
We propose an extension of the Ellipsoidal-Statistical BGK model to account for discrete levels of v...
High temperature gases, for instance in hypersonic reentry flows, show complex phenomena like excita...
Multi-species BGK models describe the dynamics of rarefied gases with constituent particles of diffe...
A kinetic model of the Boltzmann equation for non-vibrating polyatomic gases is proposed, based on t...
A multispeed discrete‐velocity molecular model of a rarefied gas is developed which permits quantita...
Versão dos autores para esta publicação.In this paper we derive a BGK relaxation model for a mixture...
The modeling of gas flows as for re-entry vehicles or jet plume expansion faces a large range of the...
International audienceWe propose two models of the Boltzmann equation (BGK and Fokker-Planck models)...
A BGK‐type model for a reactive multicomponent gas undergoing chemical bimolecular reactions is here...