Journal of engineering physics

, Volume 37, Issue 1, pp 796–800 | Cite as

Effect of self-oscillations on the hydraulic resistance of a vortex tube

  • Yu. A. Knysh


It has been established experimentally that the hydraulic loss increases as tangential self-oscillations develop in a swirled flow.


Vortex Statistical Physic Hydraulic Resistance Vortex Tube Swirl Flow 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.


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Literature cited

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    V. K. Shchukin, Heat Exchange and Hydrodynamics of Internal Flow in Mass Force Fields [in Russian], Mashinostroenie, Moscow (1970).Google Scholar
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    Yu. A. Knysh and S. V. Lukachev, in: Reports at the Eighth All-Union Acoustic Conference [in Russian], Acoustic Institute, Academy of Sciences of the USSR, Moscow (1973).Google Scholar
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    G. N. Abramovich, Applied Gas Dynamics [in Russian], Gostekhizdat, Moscow (1951).Google Scholar
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    Yu. A. Knysh and S. V. Lukachev, in: Transactions of the Kuibyshev Aviation Institute [in Russian], Vol. 67 (1974).Google Scholar
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    I. E. Idel'chik, Manual on Hydraulic Resistances [in Russian], Mashinostroenie, Moscow (1975).Google Scholar
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    Yu. I. Khavkin, Centrifugal Sprayers [in Russian], Mashinostroenie, Leningrad (1976).Google Scholar
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    V. T. Aniskin, Yu. A. Knysh, Yu. L. Kovylov, and V. P. Lukachev, Ground Utilization of Aircraft Engines in the People's Economy, Information Literature at an Interindustry Exhibition (VIMI) [in Russian], Vol. 1 (1975).Google Scholar
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    A. A. Petrov, in: Mechanical Purification of Industrial Gases [in Russian], Mashinostroenie, Moscow (1974).Google Scholar

Copyright information

© Plenum Publishing Corporation 1980

Authors and Affiliations

  • Yu. A. Knysh
    • 1
  1. 1.Kuibyshev Aviation InstituteUSSR

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