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

Zh. Vychisl. Mat. Mat. Fiz., 2012 Volume 52, Number 7, Pages 1304–1316 (Mi zvmmf9608)

This article is cited in 18 papers

Spatial discretization of the one-dimensional quasi-gasdynamic system of equations and the entropy balance equation

A. A. Zlotnikab

a National Research University "Moscow Power Engineering Institute"
b Moscow Power Engineering Institute (Technical University)

Abstract: For the quasi-gasdynamic system of equations, there holds the law of nondecreasing entropy. Difference methods based on this system have been successfully used in numerous applications and test gasdynamic computations. In theoretical terms, however, for standard spatial discretizations of this system, the nondecreasing entropy law does not hold exactly even in the one-dimensional case because of the mesh imbalance terms. For the quasi-gasdynamic equations, a new conservative spatial discretization is proposed for which the entropy balance equation has an appropriate form and the entropy production is guaranteed to be nonnegative (which also holds in the presence of body forces and heat sources). An important element of this discretization is that it makes use of nonstandard space-averaging techniques, including a nonlinear “logarithmic” averaging of the density and internal energy. The results hold on arbitrary nonuniform meshes.

Key words: gas dynamics, quasi-gasdynamic system of equations, spatial discretization, entropy balance equation.

UDC: 519.634

Received: 16.01.2012
Revised: 01.02.2012


 English version:
Computational Mathematics and Mathematical Physics, 2012, 52:7, 1060–1071

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