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JOURNALS // Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki // Archive

Zh. Vychisl. Mat. Mat. Fiz., 2012 Volume 52, Number 2, Pages 288–303 (Mi zvmmf9658)

This article is cited in 13 papers

Efficient method for computing rarefied gas flow in a long finite plane channel

V. A. Titareva, E. M. Shakhovb

a Dorodnicyn Computing Center, Russian Academy of Sciences, ul. Vavilova 40, Moscow, 119333 Russia
b Bauman State Technical University, Vtoraya Baumanskaya ul. 5, Moscow, 107005 Russia

Abstract: The linearized kinetic S-model is used to study the nonisothermal steady rarefied gas flow driven by differences in pressure and temperature in a plane channel between long finite parallel plates joining two tanks of infinite volume. An efficient composite (asymptotic) method is developed: a one-dimensional asymptotic solution corresponding to an infinitely long channel is constructed in the middle part of the computational domain, while a solution of the two-dimensional kinetic equation matched with the middle-part asymptotic solution is constructed near the ends of the channel. The latter solution is found numerically by a high-order accurate conservative method. The basic quantity to be computed is the gas flow rate through the channel. Characteristic flow features are also investigated. The resulting solutions are compared with previously known results.

Key words: rarefied gas, kinetic model, Poiseuille flow, thermal creep, TVD scheme.

UDC: 519.634

Received: 17.05.2011
Revised: 02.08.2011


 English version:
Computational Mathematics and Mathematical Physics, 2012, 52:2, 269–284

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