Calculation of gas flow parameters around reentry vehicle
Matematičeskoe modelirovanie, Tome 20 (2008) no. 7, pp. 13-22.

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Original numerical algorithm of gas parameters calculation around reentry vehicle was described and tested. It is based on the Quasi Gas Dynamics (QGD) equations system and its approximations on hybrid meshes. These meshes include both rectangular and triangular cells. The results of calculations on sequence of condensed meshes for Mach numbers 2, 5 and 12 are presented. These results correspond to known data and demonstrate high efficiency of algorithm.
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T. A. Kudryashova; S. V. Polyakov; A. A. Sverdlin. Calculation of gas flow parameters around reentry vehicle. Matematičeskoe modelirovanie, Tome 20 (2008) no. 7, pp. 13-22. http://geodesic.mathdoc.fr/item/MM_2008_20_7_a1/

[1] Sheretov Yu. V., Matematicheskoe modelirovanie techenii zhidkosti i gaza na osnove kvazigidrodinamicheskikh i kvazigazodinamicheskikh uravnenii, Tver. gos. un-t, Tver, 2000

[2] Elizarova T. G., Kvazigazodinamicheskie uravneniya i metody rascheta vyazkikh techenii, Nauchnyi mir, M., 2007, 352 pp.

[3] Graur I. A., Kudryashova T. A., Polyakov S. V., “Modeling of Flow for Radiative Transport Problems”, Parallel Computational fluid Dynamics. Multidisciplinary Applications, Proc. of Int. Conf. Parallel CFD 2004 (Las Palmas de Gran Canaria, SPAIN, May 24–27, 2004), Elsevier, 2005, 239–245 | MR

[4] Elizarova T. G., Seregin V. V., “Approksimatsiya kvazigazodinamicheskikh uravnenii na treugolnykh setkakh”, Vestnik Mosk. universiteta, seriya 3. Fizika. Astronomiya, 2005, no. 4, 15–18 | MR | Zbl

[5] Elizarova T. G., Sokolova M. E., Sheretov Yu. V., “Kvazigazodinamicheskie uravneniya i chislennoe modelirovanie techenii vyazkogo gaza”, ZhVM i MF, 45:3 (2005), 545–556 | MR | Zbl

[6] Chetverushkin B. N., Matematicheskoe modelirovanie zadach dinamiki izluchayuschego gaza, Nauka, M., 1985 | MR | Zbl

[7] Milyukova O. Yu., Churbanova N. G., “O postroenii parallelnykh algoritmov resheniya dvumernykh zadach radiatsionnoi gazovoi dinamiki”, Matem. modelirovanie, 6:9 (1994), 53–60 | MR | Zbl