A method of adaptive artificial viscosity for solving numerically the equations of a viscous heat-conducting compressible gas
Numerical methods and programming, Tome 19 (2018) no. 1, pp. 51-62.

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This paper is devoted to the numerical solution of the dynamics equations for a viscous heat-conducting compressible gas by the method of adaptive viscosity on unstructured tetrahedral meshes. A combination of the MacCormack method and the Lax-Wendroff method allows one to monotonize the difference scheme using the method of frozen coefficients. The numerical results are in good agreement with experimental data.
Keywords: numerical simulation, gas dynamics, unstructured meshes, artificial viscosity.
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     author = {D. V. Ivanov and G. M. Kobel'kov and M. A. Lozhnikov and A. F. Kharisov},
     title = {A method of adaptive artificial viscosity for solving numerically the equations of a viscous heat-conducting compressible gas},
     journal = {Numerical methods and programming},
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     url = {http://geodesic.mathdoc.fr/item/VMP_2018_19_1_a4/}
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D. V. Ivanov; G. M. Kobel'kov; M. A. Lozhnikov; A. F. Kharisov. A method of adaptive artificial viscosity for solving numerically the equations of a viscous heat-conducting compressible gas. Numerical methods and programming, Tome 19 (2018) no. 1, pp. 51-62. http://geodesic.mathdoc.fr/item/VMP_2018_19_1_a4/