PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Experimental investigations of the influence of mixing chamber geometry on performance of water-air ejector

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with the experimental investigations of a two-phase water-air ejector. The experimental apparatus and procedure are described. The aim of the research was to investigate the influence of the ejector geometry on is performance. A special attention was paid to the influence of the mixing chamber length on the gas suction rate, ejector efficiency as well as on the friction loss coefficient of the mixing chamber.
Słowa kluczowe
Rocznik
Tom
Strony
113--136
Opis fizyczny
Bibliogr. 26 poz., rys.
Twórcy
  • Institute of Fluid-Flow Machinery, Gdańsk, Poland
autor
  • Institute of Fluid-Flow Machinery, Gdańsk, Poland
  • Institute of Fluid-Flow Machinery, Gdańsk, Poland
autor
  • Institute of Fluid-Flow Machinery, Gdańsk, Poland
Bibliografia
  • [1] Sokolov E. J., Zinger N. M.: Jet apparatuses, Energoatomizdat, Moskva. 1989, (in Russian).
  • [2] Goliski J. A., Troskolaski A. T.: Ejectors, WNT, Warszawa, 1979, (in Polish).
  • [3] Filipczak G.: Jet devices - review of design and application, Inżynieria i Aparatura Chemiczna, No 4, 1985, 3-7, (in Polish),.
  • [4] Cramers P. H. M. R., Smit L., Leuteritz G. M., van Dierendonck L. L., Be-enackers A. A. C. M.: Hydrodynamics and local mass transfer characteristic-of gas-liquid ejectors, The Ghent Eng. J., Vol. 53, 1993, 67-73.
  • [5] Hongqui L.: Liquid gas two phase flow theory of jet pump, Inter. Conf. on the Physical Modelling of Multi-Phase Flow, Coventry, England, 1983, 439-451.
  • [6] Witte J.H.: Efficiency and design of liquid-gas ejectors, British Chemie, Engineering, No 9, Vol. 10. 1965, 602-607.
  • [7] Biswas M. N., Mitra A. K.: Momentum transfer in horizontal, multi-jet liquid-gas ejector, The Can. J. of Chem. Eng., October, Vol. 59, 19SI 634-637.
  • [8] Henzler H.-J.: Das Sogverhalten von Stmhlsaugern fwr das Stoffsyst&to flüssig - gasförmig, Verfahrenstechnik, Vol. 15, No 10, 1981, 738-749.
  • [9] Cunningham R. G.: Gas compression with the liquid jet pump. Transaction of the ASME, Journal of Fluids Engineering, No 3, Vol. 94, 1974, 203-215.
  • [10] Zinger K. M.: Investigation of water-air ejector, Teploenergetica, No. 8, 1958 26-31, (in Russian).
  • [11] Berman L. D., Efimotschkin C. I.: Relationships for calculation of water-jet ejectors, Teploenergetica, No. 7, 1964. 44-48, (in Russian).
  • [12] Berman L. D., Efimotschkin G. L: Method of calculation of water-jet ejector, Teploenergetica, No. 8, 1964, 92-94, (in Russian).
  • [13] Berman L. D., Efimotschkin G. I.: On calculation of water-jet ejectors for condensation plants, Teploenergetica, No. 7, 1983. 57-58, (in Russian).
  • [14] Efimotschkin G. I., Korhcnnov B. E.: Calculation method of water-air ejector with elongated mixing chamber, Teploenergetica, No. 1, 1976, 84-86, (in. Russian).
  • [15] Efimotschkin G. I.: Design and calculation of water-jet ejectors with elongated mixing chamber, Teploenergetica, No. 12, 1989. 48-51, (in Russian).
  • [16] Cunningham R. G.: Jet breakup and mixing chamber lengths for the liquid-jet gas pump, Trans, of the ASME, J. of Fluids Eng., No. 3, Vol. 94. 1974, 216-226.
  • [17] Berman L. D., Efimotschkin G. I.: Experimental investigation of water-jet ejector; Teploenergetica, No. 9, 1963, 9-15,(in Russian).
  • [18] Berman L. D.. Efimotschkin G. I.: Peculiarities of working process and work parameters of water-jet ejector, Teploenergetica, No. 2, 1964, 31-35, (in Russian).
  • [19] Bazhenov M. I.: Experimental investigation of transparent model of water-air jet device, Izvcstha Vissikh Uchebnikh Zaveedeni, No 3, 1966, 82-86.
  • [20] Korhennov B. E.: Working process in gas-liquid ejector, Teploenergetica, No. 1, 1977, 59-65, (in Russian).
  • [21] Berman L. D., Efimotschkin G. I.: The effect of mixing chamber on work parameters and economic efficiency of water-jet air ejector, Teploenergetica. No. 12, 1978, 66-71, (in Russian).
  • [22] Butrymowicz D., Trela M., Ihnatowicz E., Karwacki J.: Experimental investigations of the. effect of the nozzle geometry on work of water-air ejector. Transactions of IFFM, No. 107 (2000), 1-22.'
  • [23] Trela M., Butrymowicz D., Rybnik R.: Modelling of liquid-gas ejector, Part 1. Report of PF-FM, No. 125/98, Gdansk, 199S, (in Polish).
  • [24] Kwidziński R.: Stationary shock wave in the flow of a water-vapour mixture, Scientific Notes of IFFM, No. 498/1458/99, Gdańsk, 1999.
  • [25] Paliwoda A.: Ejector refrigeration devices. WNT, Warszawa, 1971, (in Polish).
  • [26] Cattadori G., Galibati L., Mazzochi L., Vanini P.: A single-stage high pressure steam injector for next generation reactors: test results and analysis, Inter. J. of Multiphase Flow, Vol. 21, No. 4, 1995, 591-606.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM2-0008-0003
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.