Numerical simulation of external hypersonic equilibrium air flows
Matematičeskoe modelirovanie, Tome 19 (2007) no. 12, pp. 70-80.

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The paper refers to the numerical simulation of 3D turbulent external flows of equilibrium dissociated air. A model of such flows is described, which is adapted to the use of coarse meshes to calculate the forces and heat flows acting on the object. The model used bases on the solution of Favre averaged Navier–Stockes system, energy conservation equation and the model of thermodynamic properties of equilibrium dissociated air. The paper also addresses the questions of composition and application of such models for the applied CFD package. Some numerical examples are provided.
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V. A. Volkov; V. N. Gavriliouk; V. Yu. Gidaspov; A. V. Khokhlov. Numerical simulation of external hypersonic equilibrium air flows. Matematičeskoe modelirovanie, Tome 19 (2007) no. 12, pp. 70-80. http://geodesic.mathdoc.fr/item/MM_2007_19_12_a7/

[1] Dyakonov Yu. N., Pchelkina L. V., Sandomirskaya I. D., Sverkhzvukovoe obtekanie zatuplennykh tel, ed. G. S. Roslyakov, Izd. MGU, 1971

[2] NASA Research and Technology, NASA Ames Research Centre, 1998 Technical Memorandum NASA/TM-1999-208768

[3] Gavriliok V. N., Denisov O. P., Nakonechny V. P. et al., Numerical Similation of Working Processes in Rocket Engine Combustion Chamber, IAF-93-S.463, October, 1993, Graz, Austria

[4] Krulle G., Gavriliouk V., Schley C.-A., Sobachkin A., 45th Congress of the Int. Astronautical Federation, Jerusalem, Israel, October 9–14, 1994, IAF-94-S2.414

[5] Hagemann G., Schley C.-A., Odintsov E., Sobatchkine A., “Nozzle flow field analysis with particular regard to 3D-plug-claster configurations”, AIAA, 1996, 2954, 32nd AIAA/ASME/SAE/ASEE Joint Propulsion Conf., Lake Buena Vista, FL, July 1–3

[6] Schley C.-A., Deplanque J., Merkle C. et al., “Fundamental and technological aspects of combustion chamber modelling”, Proc. 3rd Int. Symp. Space Propulsion (Beijing, China, August 11–13, 1997), 1–15

[7] Gurvich L. V. i dr., Termodinamicheskie svoistva individualnykh veschestv, Spravochnoe izdanie v 4-kh tomakh, Nauka, M., 1982

[8] G. G. Chernyi, S. A. Losev (red.), Fiziko-khimicheskie protsessy v gazovoi dinamike. Spravochnik. T. 2. Fiziko-khimicheskaya kinetika i termodinamika, Nauchno-izdatelskii tsentr mekhaniki, M., 2002

[9] Gidaspov V. Yu., “Vychislitelnyi algoritm resheniya zadachi o raspade proizvolnogo razryva v ravnovesno-reagiruyuschem gaze”, Matem. modelirovanie, 18:8 (2006), 64–76 | Zbl

[10] Sinyarev G. B., Vatolin N. A., Trusov B. G., Moiseev G. K., Primenenie EVM dlya termodinamicheskikh raschetov metallurgicheskikh protsessov, Nauka, M., 1982

[11] S. K. Godunov, Chislennoe reshenie mnogomernykh zadach gazovoi dinamiki, Nauka, M., 1976 | MR | Zbl

[12] Prokopov G. P., Approksimatsiya tablichnykh uravnenii sostoyaniya dlya rascheta gazodinamicheskikh zadach, Preprint IPM No 80, M., 2004 | Zbl

[13] Kryukova S. G., Nekotorye osobennosti obtekaniya zatuplennogo polukonusa i polukonusa s krylyami v giperzvukovom potoke razrezhennogo gaza, Trudy TsAGI, 2111, 1981

[14] Holden M. S, Wieting A. R., Moselle J. R and Glass C., “Studies of Aerothermal Loads Generated in Regions of Shock/Shock Interaction in Hypersonic Flow”, AIAA, 1988, 0477

[15] Volkov V. A., Gavrilyuk V. N., Gidaspov V. Yu. i dr., “Chislennoe modelirovanie gazokapelnykh reagiruyuschikh potokov v kamerakh sgoraniya dvigatelnykh ustanovok”, Matem. modelirovanie, 17:8 (2005), 46–60 | MR | Zbl