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Outflow from a laval nozzle with condensation of the vapor phase on a concomitant jet of cold liquid

  • S. I. Alad'ev
  • F. M. Krantov
  • S. V. Teplov
Article

Keywords

Mathematical Modeling Mechanical Engineer Industrial Mathematic Vapor Phase Laval Nozzle 
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

  1. 1.
    F. M. Krantov, S. V. Teplov, and V. A. Mukhin, “Experimental investigation of a two-phase Laval nozzle with a central body,” in: Questions of Gas Thermodynamics and Power Installations [in Russian], No. 1, KhAI, Kharkov (1974).Google Scholar
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    M. A. Bespyatov, V. Ya. Mikhailov, S. D. Frolov, and V. F. Khudyakov, “Effect of initial dryness of vapor on effectiveness of acceleration of a fluid in a channel of prescribed geometry,” in: Questions of Gas Thermodynamics and Power Installations [in Russian], No. 1, KhAI, Kharkov (1974).Google Scholar
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    M. A. Grolms and M. Petrik, “Experimental investigation of operation of a condensation injector and analysis of the efficiency with supersonic vapor velocity at the inlet,” in: Direct Conversion of Thermal Energy to Electrical Energy in Electric and Fuel Cells [in Russian], No. 7 (1969).Google Scholar
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    R. M. Terril, “Flow through a porous annulus,” Appl. Sci. Res.,17, 204 (1967).Google Scholar
  5. 5.
    R. I. Nigmatulin, “Equations of hydromechanics and compression waves in a two-velocity and two-temperature medium in the presence of phase transitions,” Izv. Akad. Nauk SSSR, Mekh. Zhidk. Gaza, No. 5 (1967).Google Scholar
  6. 6.
    R. Ya. Kucherov and L. É. Rikenglaz, “Measurement of the condensation coefficient,” Dokl. Akad. Nauk SSSR,133, No. 5 (1960).Google Scholar

Copyright information

© Plenum Publishing Corporation 1981

Authors and Affiliations

  • S. I. Alad'ev
    • 1
  • F. M. Krantov
    • 1
  • S. V. Teplov
    • 1
  1. 1.Moscow

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