Operational Process and Characteristics of Liquid-Gas Jet Pumps with the Ejected Vapor-Gas Medium

被引:4
|
作者
Ismagilov, A. R. [1 ]
Spiridonov, E. K. [1 ]
机构
[1] South Ural State Univ, 76 Lenin Ave, Chelyabinsk 454080, Russia
关键词
non-condensable gas; vapor-gas medium; physical-and-mathematical model; extremal characteristic; potential of jet pump; compression ratio; ejection coefficient by dry gas;
D O I
10.1016/j.proeng.2016.06.756
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In many industrial processes, the use of a liquid-gas jet pump refers to the ejection of the vapor-gas medium, i.e. a medium containing non-condensable and condensable gases in the liquid jet. Conventional calculation methods are used for jet devices that eject non-condensable gases. However, the presence of steam in the medium ejected makes a significant contribution to the operational process and, consequently, its mathematical description and device specifications. The article deals with the development of physical and mathematical models and determination of properties of liquid-gas jet pumps (LGJP) with an ejected vapor-gas medium. While calculating the performance there were used: Bernoulli equation - for spin-up of the active flow in the nozzle device; water balance equation, heat balance, conservation of momentum - for vapor condensation in the suction chamber; momentum equation and isothermal state equation of liquid-gas mixture - for mixture of media in the mixing chamber; liquid-gas mixture flow equation-for transformation of excess kinetic energy into the potential energy in the diffuser. Extremal characteristics that reflected the potential of the LGJP work were calculated on the basis of the equations. Analysis of specifications was carried out in a non-dimensional coordinates - in terms of the ejection coefficient by dry gas and compression ratio. The calculation of set of extremal characteristics with different ratios of the steam flow to the liquid showed that the presence of steam in the pumped medium degrades performance, i.e. the ejection coefficient is reduced at a constant compression ratio. (C) 2016 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:247 / 253
页数:7
相关论文
共 50 条
  • [31] COMPUTATIONAL METHOD FOR THE PROCESS OF CONDENSATION FROM A VAPOR-GAS MIXTURE.
    Volkov, Yu.A.
    Nikitin, V.M.
    Power engineering New York, 1981, 19 (03): : 139 - 142
  • [32] Self-similar theory of nonisothermal vapor condensation on a droplet growing in a vapor-gas medium
    A. P. Grinin
    G. Yu. Gor
    F. M. Kuni
    Colloid Journal, 2008, 70 : 158 - 167
  • [33] Experimental Study on the Performance and Internal Flow Characteristics of Liquid-Gas Jet Pump with Square Nozzle
    Cao, Zhengqing
    Yang, Xuelong
    Xu, Xiao
    Zhu, Chenbing
    Zou, Daohang
    Zhou, Qiwei
    Fang, Kaiyue
    Zhang, Xinchen
    Mou, Jiegang
    WATER, 2024, 16 (17)
  • [34] Self-similar theory of nonisothermal vapor condensation on a droplet growing in a vapor-gas medium
    Grinin, A. P.
    Gor, G. Yu.
    Kuni, F. M.
    COLLOID JOURNAL, 2008, 70 (02) : 158 - 167
  • [35] Predictive LPV control of a liquid-gas separation process
    Salcedo, J. V.
    Martinez, M.
    Ramos, C.
    Herrero, J. M.
    ADVANCES IN ENGINEERING SOFTWARE, 2007, 38 (07) : 466 - 474
  • [36] MATHEMATIC MODEL OF ACETONE CONDENSATION FROM VAPOR-GAS MIXTURE PROCESS
    BODROV, VI
    KUDINOV, YI
    LAZUTIN, SB
    MUROMTSEV, YL
    RYAZANTSEV, VD
    KHIMICHESKAYA PROMYSHLENNOST, 1980, (03): : 175 - 178
  • [37] MASS TRANSFER CHARACTERISTICS OF A VENTURI LIQUID-GAS CONTACTOR
    BAUER, WG
    FREDRICKSON, AG
    TSUCHIYA, HM
    INDUSTRIAL & ENGINEERING CHEMISTRY PROCESS DESIGN AND DEVELOPMENT, 1963, 2 (03): : 178 - &
  • [38] Capillary hydrodynamics of liquid-gas interface in flotation process
    Belova, N.S.
    Leonov, S.B.
    Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, 1993, (06): : 67 - 72
  • [39] PRECALCULATION OF LIQUID-PHASE CONSTANTS FOR LIQUID-GAS AND LIQUID-VAPOR EQUILIBRIA
    KOPSEL, R
    CHEMISCHE TECHNIK, 1974, 26 (04): : 206 - 210
  • [40] Dynamics of Vapor-Gas Bubbles in a Liquid Near Solid Surfaces with Different Properties
    Lyubimova, T. P.
    Rybkin, K. A.
    Fattalov, O. O.
    Filippov, L. O.
    XXI WINTER SCHOOL ON CONTINUOUS MEDIA MECHANICS, 2019, 581