Combined Kinetic-Hydrodynamic Model of Polyatomic Gas Flow


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Abstract

A mathematical model of the flow of a polyatomic gas containing a combination of the Navier-Stokes-Fourier (NSF) model and the model kinetic equation of polyatomic gases is presented. At the heart of the composed components is a unified physical model, as a result of which the NSF model is a strict first approximation of the model kinetic equation. The model allows calculations of flow fields in a wide range of Knudsen numbers (Kn), as well as fields containing regions of a high degree of dynamic nonequilibrium. The boundary conditions on a solid surface are set at the kinetic level, which allows, in particular, to formulate the boundary conditions on the surfaces absorbing or emitting gas. The composed model was tested. The example of the problem of the shock wave profile shows that up to Mach numbers M ≈ 2 the combined model gives smooth solutions even in those cases where the sewing point is in a high gradient region. For the Couette flow, smooth solutions are obtained at M = 5 and Kn = 0.2.

About the authors

Ju. A. Nikitchenko

Moscow Aviation Institute (National Research University)

Author for correspondence.
Email: nikitchenko7@yandex.ru
Russian Federation, Moscow

S. A. Popov

Moscow Aviation Institute (National Research University)

Author for correspondence.
Email: flowmech@mail.ru
Russian Federation, Moscow

A. V. Tikhonovets

Moscow Aviation Institute (National Research University)

Author for correspondence.
Email: tikhalena@gmail.com
Russian Federation, Moscow


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