• DocumentCode
    2919820
  • Title

    CFD Analysis of Generator Condition on Ejector Performance in an Air Conditioner System

  • Author

    Wang, Jin-Feng ; Xie, Jin ; Wang, Yong-hong ; Tao, Le-Ren ; Huang, Li-hao

  • Author_Institution
    Coll. of Food Sci. & Technol., Shanghai Ocean Univ., Shanghai, China
  • fYear
    2011
  • fDate
    19-20 Feb. 2011
  • Firstpage
    1081
  • Lastpage
    1085
  • Abstract
    The 2D axisymmetric, real gas model was developed to calculate the ejector in the ejector cooling system. The calculation of the real gas model occupies more computer resources, but its result can be more authentic. The CFD model was validated with available experimental data. Predictions at the operating conditions in the ejector cooling system were discussed. The aim of the prediction is to obtain the ejector performance in the non-design condition and variable operating condition. There is an optimum generator condition tg*=71°C (Pg*=3.34bar) with the giving geometry parameters. When Pg=Pg*, the system mechanical COP reached the maximum value; when Pg<;Pg*, the COP decreased sharply; when Pg>;Pg*, the COP also decreased but the decrease trend became a little slowly. In the paper, the cause of the result was analyzed using the CFD technique. The ejector entrainment ratio was affected by the operation condition and the ejector structure in the same time.
  • Keywords
    air conditioning; computational fluid dynamics; cooling; heat transfer; power engineering computing; CFD analysis; COP; air conditioner system; ejector cooling system; ejector entrainment ratio; ejector performance; generator condition; geometry parameter; nondesign condition; real gas model; Computers; Distributed control; Monitoring; CFD; air conditioner system; ejector; entrainment ratio; mechanical COP;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computer Distributed Control and Intelligent Environmental Monitoring (CDCIEM), 2011 International Conference on
  • Conference_Location
    Changsha
  • Print_ISBN
    978-1-61284-278-3
  • Electronic_ISBN
    978-0-7695-4350-5
  • Type

    conf

  • DOI
    10.1109/CDCIEM.2011.143
  • Filename
    5748001