Motion of a viscous thermally conducting gas under the effect of a rotating disk

  • V. P. Shidlovskii
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Mathematical Modeling Mechanical Engineer Industrial Mathematic 
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Literature cited

  1. 1.
    T. Kármán, “Laminare and Turbulente Reibung,” Z. Angew, Math. Mech.,1, 235 (1921).Google Scholar
  2. 2.
    L. G. Loitsyanskii, The Laminar Boundary Layer [in Russian], Fizmatgiz, Moscow (1962).Google Scholar
  3. 3.
    L. A. Dorfman, Hydrodynamic Resistance and Heat Transfer of Rotating Bodies [in Russian], Fizmatgiz, Moscow (1960).Google Scholar
  4. 4.
    K. Millsaps and K. Pohlhausen, “Heat transfer by laminar flow from a rotating plate,” J. Aeronaut. Sci.,19, No. 2, 120 (1952).Google Scholar
  5. 5.
    V. V. Sychev, “On the motion of a viscous electrically conducting liquid under the effect of a rotating disk in the presence of a magnetic field,” Prikl. Mat. Mekh.,24, No. 5, 906 (1960).Google Scholar
  6. 6.
    V. P. Shidlovskii, “Study of the motion of a viscous electrically conducting liquid produced by the rotation of a disk in the presence of an axial magnetic field” Magnitn. Gidrodinam, No. 1, 93 (1966).Google Scholar
  7. 7.
    V. P. Shidlovskii, “The laminar boundary layer at an unbounded disk rotating in a gas,” Prikl. Mat. Mekh.,24, No. 1, 161 (1960).Google Scholar
  8. 8.
    S. Ostrach and J. D. Thornton, “Compressible laminar flow and heat transfer about a rotating isothermal disk,” NASA Tech. Note, No. 4320 (1958).Google Scholar
  9. 9.
    M. D. Van Dyke, Perturbation Methods in Fluid Mechanics, Academic Press, New York (1964).Google Scholar
  10. 10.
    D. R. Davies, “Heat transfer by laminar flow from a rotating disk at large Prandtl. numbers,” Quart. J. Mech. Appl. Math.,12, No. 1, 14 (1959).Google Scholar
  11. 11.
    L. A. Dorfman, “Heat transfer of a rotating disk,” Inzh.-Fiz. Zh., No. 1, 3 (1958).Google Scholar
  12. 12.
    V. V. Sychev, “Hypersonic flows of a viscous thermally conducting gas,” Prikl. Mat. Mekh.,25, No. 4, 600 (1961).Google Scholar
  13. 13.
    W. G. Cochran, “The flow due to a rotating disc,” Proc. Cambridge Phil. Soc.,30, No. 3, 365 (1934).Google Scholar

Copyright information

© Plenum Publishing Corporation 1976

Authors and Affiliations

  • V. P. Shidlovskii
    • 1
  1. 1.Moscow

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