Dynamical pressure in a polyatomic gas: interplay between kinetic theory and extended thermodynamics
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Publication:2411089
DOI10.3934/krm.2018004zbMath1376.80002OpenAlexW2746385961MaRDI QIDQ2411089
Tommaso Ruggeri, Marzia Bisi, Giampiero Spiga
Publication date: 20 October 2017
Published in: Kinetic and Related Models (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3934/krm.2018004
Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Foundations of thermodynamics and heat transfer (80A05) Kinetic theory of gases in time-dependent statistical mechanics (82C40)
Related Items (18)
On the Cauchy problem for Boltzmann equation modeling a polyatomic gas ⋮ Polytropic gas modelling at kinetic and macroscopic levels ⋮ Relativistic kinetic theory of polyatomic gases: classical limit of a new hierarchy of moments and qualitative analysis ⋮ A general framework for the kinetic modelling of polyatomic gases ⋮ Modelling and numerical study of the polyatomic bitemperature Euler system ⋮ On the Maxwell-Stefan diffusion limit for a reactive mixture of polyatomic gases in non-isothermal setting ⋮ A two-temperature six-moment approach to the shock wave problem in a polyatomic gas ⋮ Integrability properties for relativistic extended thermodynamics of polyatomic gas ⋮ Extended thermodynamics of dense polyatomic gases: modeling of molecular energy exchange ⋮ Nonequilibrium pressure and temperatures in extended thermodynamics of gases with six fields ⋮ Integrability Propagation for a Boltzmann System Describing Polyatomic Gas Mixtures ⋮ On the Chapman-Enskog asymptotics for a mixture of monoatomic and polyatomic rarefied gases ⋮ A BGK model for reactive mixtures of polyatomic gases with continuous internal energy ⋮ Effect of the dynamic pressure on the similarity solution of cylindrical shock waves in a rarefied polyatomic gas ⋮ Maximum entropy principle closure for 14-moment system for a non-polytropic gas ⋮ A BGK model for high temperature rarefied gas flows ⋮ A kinetic model for a polyatomic gas with temperature-dependent specific heats and its application to Shock-wave structure ⋮ Macroscopic equations for inert gas mixtures in different hydrodynamic regimes
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