Numerical simulation of turbulent combustion gas subsonic jet flows
Matematičeskoe modelirovanie, Tome 24 (2012) no. 3, pp. 21-32.

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We propose a physical and mathematical model of turbulent combustion subsonic gas jet of fuel flowing into a space with air. Processes are described by the averaged equations of the boundary layer model of turbulent viscosity and diffusion model of combustion. As models of turbulent viscosity two-parameter model are made famous $k$-$\varepsilon$ and $k$-$\omega$. The comparison of numerical results with experimental data on the averaged and pulsating flow characteristics is presented.
Keywords: turbulent flow
Mots-clés : turbulent combustion, diffusion combustion.
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J. M. Lipnitskii; A. V. Safronov. Numerical simulation of turbulent combustion gas subsonic jet flows. Matematičeskoe modelirovanie, Tome 24 (2012) no. 3, pp. 21-32. http://geodesic.mathdoc.fr/item/MM_2012_24_3_a1/

[1] Polezhaev Yu. V., “O turbulentnosti i turbulentnoi vyazkosti v struinykh techeniyakh”, TVT, 45:3 (2007), 378–383

[2] Wilcox D. C., Turbulence modeling for CFD, Second edition, DCW Industries, Inc., 1998, 460 pp.

[3] Vulis L. A., Yarin L. P., Aerodinamika fakela, Energiya, L., 1978

[4] V. P. Glushko (red.), Termodinamicheskie i teplofizicheskie svoistva produktov sgoraniya. Spravochnik, v. 1, VINITI AN SSSR, M., 1976

[5] Gosmen A. D., Pan V. M., Ranchel A. K., Spolding D. B., Volfshtein M., Chislennye metody issledovaniya techenii vyazkoi zhidkosti, Per. s angl. V. A. Khokhryakova, ed. G. A. Tirskii, Mir, M., 1972

[6] Safronov A. V., “Chislennyi metod rascheta strui produktov sgoraniya pri starte raket”, Kosmonavtika i raketostroenie, 2007, no. 1(46), 72–79 | MR

[7] Kozlov V. E., Sabelnikov A. V., “Chislennyi metod rascheta turbulentnykh struinykh techenii v kanalakh v priblizhenii pogranichnogo sloya”, Trudy TsAGI, 1979, no. 1982

[8] Toshimi Takagi, Hyun-Dong Shin, Akira Ishio, “Properties of Turbulence in Turbulent Diffusion Flames”, Combustion and Flame, 40 (1981), 121–140 | DOI