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Investigations of instability of liquid jets emanating from nozzles into ambient air - Part. I

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the results of investigations of instability of liquid jets emanating from contoured nozzles into ambient air. The major attention ha sbeen paid to the measurements of the jet structure and the distance beyond which the jed lost its continuity and was broken onto liquid droplets. Investigations have been conducted at various pressures of water in the nozzle and its three diameters. The results have been compared against available data literature.
Słowa kluczowe
Rocznik
Tom
Strony
109--132
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
  • Institute of Fluid-Flow Machinery of PAS, Gdańsk, Poland
autor
  • Institute of Fluid-Flow Machinery of PAS, Gdańsk, Poland
Bibliografia
  • [1] Shih-Jiun Chen, Tseng A. A.: Spray and jet cooling. Int. J. Heat Fluid Flow, 13(1992), 4, 358-369.
  • [2] Chen J., Kothari J., Tseng A.: Cooling of moving plate by an impinging circular water jet Exp. Thermal Fluid Sci., 3(1991), 343-353.
  • [3] Rymkiewicz J., Trela M.: The radial spread of a free liquid jet over a horizontal cylinder, Proc. Int. Symposium on Heat Transfer and Renewable Energy Sources, Szczecin-Leba, 2000, 327-334.
  • [4] Bolle L., Monrcau J. C: Experimental study of heat transfer by spray cooling, Heat and Mass Transfer in Metallurgical Systems, Hemisphere, Washington. DC, 1981, 527-534.
  • [5] Rayleigh Lord : On the instability of jets, Proc. London Math. Soc. Vol. 10. 1879. 4-10.
  • [6] Weber C: Zum Zerfall ernes Flussigketsstrahles, Z. Angew. Math. Mech. 11(1931), 2, 136-154.
  • [7] Orzechowski Z.: Liquid spraying. WNT, Warszawa 1976.
  • [8] Orzechowski Z., Prywer J.: Liquid spraying in power engineering equipment, WNT, Warszawa 1994.
  • [9] Wereshchagin L. F., Semerchan A. A., Firsov A. I., Galaktyonov W. A., Filler F. M.: Investigations of liquid jet flowing out the nozzle under pressure of 1500 at, ZhumalTekhuicheskoy Fiziki, Vol. XXVI, wyp. 11, 1956, 2570-2577, (in Russian).
  • [10] Wereshchagin L. F., Semerchan A. A.. Filler F. M.: Investigations of liquid jet flowing out the nozzle under pressure of 2000 at, Izviestiya Akademii Nauk SSSR, Otdeleuye Teklmicheskikh Nauk, 1(1957), 57-60, (in Russian).
  • [11] Ihnatowicz E., Krupa A., Trela M.: Influence of the feeding nozzle and its diameter on the jet breakup, IFFM PAS Internal Report, ur 1720/2001, Gdansk, 2001.
  • [12] Pazhi D. G., Galustov W. S.: Fundamentals of liquid spraying, Khimiya, Moskva 1984, (in Russian).
  • [13] Wereshchagin L. F., Semerchan A. A., Sekoyan S. S.: On the problem of high velocity water jet breakup, Zhurnal Tekhnicheskoy Fiziki, Vol. XXIX, 1(1959). 46-50, (in Russian).
  • [14] Gram R. L., Middleman S.: Newtonian jet stability, AIChE Journal, 12(1986), 4, 1966.
  • [15] Middleman S.: Modeling axisymmetric flows, dynamics of films, jets, and crops, Academic Press, New York, London 1995.
  • [16] Lienhard J. H., Day J. B.: The breakup of superheated liquid jets, Trans, of the ASME, J. of Basic Engineering, September 1970, 515-522.
  • [17] Bin A. K.: Gas entrainmenl by plunging liquid jets, VDI. Forschungsheft 648/1988. 1-36.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM2-0008-0018
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