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scientific edition of Bauman MSTU

SCIENCE & EDUCATION

Bauman Moscow State Technical University.   El № FS 77 - 48211.   ISSN 1994-0408

Selection of aerodynamic configuration of a probe streamlined by a turbulent swirling gas flow

# 10, October 2012
DOI: 10.7463/1012.0461853
Article file: Стрижак_P.pdf (1004.65Kb)
authors: V.T. Kalugin, S.V. Strijak

References

  1. Belyakov V.N., Kalugin V.T., Suchev S.P., et al. Diagnosticheskii kompleks “Skanlainer” dlia obsledovaniia futerovki dymovykh trub bez ostanovki tekhnologicheskikh protsessov [The diagnostic probe-device “Scanliner” complex for inspection of chimneys without stopping technological processes]. Konversiia v mashinostroenii [Conversion in mechanical engineering], 2002, no. 1, pp. 60-66.
  2. Kalugin V.T., Strijhak S.V., Suchev S.P. Aerodinamicheskaia stabilizatsiia diagnosticheskogo kompleksa “Skanlainer” [The aerodynamic stabilization of a diagnostic complex "Scanliner"]. Izvestiia RAN. Problemy mashinostroeniia i nadezhnosti mashin [News of the Russian Academy of Sciences. Problems of mechanical engineering and reliability of devices], 2006, no. 3, pp. 87-94.
  3. Kalugin V.T., Strijhak S.V. Fizicheskoe i matematicheskoe modelirovanie otryvnogo obtekaniia  apparata-zonda s diskovymi stabilizatorami v zakruchennom  potoke gaza [Physical and mathematical modeling of a detachable flow of the probe-device with disk stabilizers in the gas swirling flow]. Nauchnyi Vestnik MGTU GA. Ser. Aeromekhanika i prochnost' [The Scientific Messenger of MGTU GA. Ser. Aeromechanics and Strength], 2008, no. 125, pp. 63-67.
  4. Belov I.A., Isaev S.A. Modelirovanie turbulentnykh techenii [The modeling of turbulent flows]. St. Petersburg, Baltic GTU Publ., 2001.107 p.
  5. Ferziger J.H., Peric M. Computational Methods for Fluid Dynamics. Springer-Verlag, Berlin, 2002. 423 p.
  6. Weller H.G., Tabor G., Jasak H., Fureby C. A tensorial approach to computational continuum mechanics using object oriented techniques. Computers in Physics, 1998, vol. 12, no. 6, pp. 620-631.
  7. Jasak H., Weller H.G., Gosman A.D. High resolution NVD differencing scheme for arbitrarily unstructured meshes. Int. J. Numer. Meth. Fluids, 1999, vol. 31, pp. 431-449. http://dx.doi.org/10.1002/(SICI)1097-0363(19990930)31:2<431::AID-FLD884>3.0.CO;2-T
  8. Fletcher C.A.J. Computational Techniques for Fluid Dynamics. In 2 vols. Vol. 1. Fundamental and General Techniques. Springer-Verlag, Berlin, 1988. (Russ. ed.: Fletcher K. Vychislitel'nye metody v dinamike zhidkostei. V 2 t. T.1. Osnovnye polozheniia i obshchie metody. Moscow, Mir, 1991. 504 p.).
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