Journal of Applied Mechanics and Technical Physics

, Volume 31, Issue 5, pp 799–801 | Cite as

Flow and separation of a rarefied binary gas mixture in a cylindrical gap with supersonic rotation of the outer cylinder

  • V. D. Borisevich
  • S. V. Yupatov


Mathematical Modeling Mechanical Engineer Industrial Mathematic Outer Cylinder 
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Literature cited

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    K. Nanbu, “Analysis of cylindrical Couette flow by use of the direct simulation method,” Phys. Fluids,27, No. 11 (1984).Google Scholar
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    H. Makihara and T. Ito, Numerical Analysis of Rarefied Cylindrical Couette Flows, Vol. 1, 14th RDG Symposium, Japan (1984).Google Scholar
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    T. Abe and H. Oguchi, Higher-Order Kinetic Model Analysis of Cylindrical Couette Flows, Vol. 1, 11th RGD Symposium, Italy (1978).Google Scholar
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    V. D. Borisevich and S. V. Yupatov, “Study of heat exchange in a rarefied gas for cylindrical Couette flow at supersonic velocity by the direct statistical method,” International Forum on Heat-Mass Transport, Reports, Sec. 9 [in Russian], Minsk (1988).Google Scholar
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    V. D. Borisevich and S. V. Yupatov, “Study of supersonic flow of a rarefied gas in a cylindrical gap,” Izv. Akad. Nauk SSSR, Mekh. Zhidk. Gaza, No. 3 (1989).Google Scholar
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    D. Volougeorgis, “Couette flow of a binary gas mixture,” Phys. Fluids,31, No. 3 (1988).Google Scholar
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    G. Bird, in: Molecular Gas Dynamics [Russian translation], O. M. Belotserkovskii and M. N. Kogan (eds.), Mir, Moscow (1981).Google Scholar

Copyright information

© Plenum Publishing Corporation 1991

Authors and Affiliations

  • V. D. Borisevich
    • 1
  • S. V. Yupatov
    • 1
  1. 1.Moscow

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