• DocumentCode
    693010
  • Title

    Numerical analysis on flow characteristics of cryogenic fluid in 90-degree bend duct

  • Author

    Youhuan Xiang ; Ping Zhang ; Wanzhong Xiong ; Wei Zhang ; Jianfeng Zhang ; Yuchuan Lu

  • Author_Institution
    Tech. Dept., TSLC, Taiyuan, China
  • fYear
    2013
  • fDate
    20-22 Dec. 2013
  • Firstpage
    2716
  • Lastpage
    2719
  • Abstract
    When analyzing flow characteristics of cryogenic fluid flows through bend duct based on CFD and Fluent, establishing and selecting suitable numerical calculation method is significance to the accuracy of the calculation result. This paper proposes a FR k-ε turbulent model which adding filter function on the basis of the Realizable k-ε model, adopts the full cavitation model, and calculates the pressure, velocity and cavitation based on Fluent when liquid oxygen flows through the square-sectioned 90-degree bend duct. It compared the calculation result with that calculated by Realizable k-ε and RNG k-ε turbulent model. From the experimental results we can know that the proposed FR k-ε model can more accurately reflect the flow characteristics of liquid oxygen flows through square-sectioned 90-degree bend duct, and better capture the change of flow field, and the calculation results are more close to the experimental data.
  • Keywords
    cavitation; computational fluid dynamics; cryogenics; ducts; filtration; numerical analysis; pipe flow; turbulence; CFD; FR k-ε turbulent model; Fluent; RNG k-ε turbulent model; cryogenic fluid flow characteristics; filter function; full cavitation model; liquid oxygen flows; numerical analysis; realizable k-ε; square-sectioned 90-degree bend duct; Computational fluid dynamics; Ducts; Numerical models; Radio access networks; 90-degree bend duct; cavitation; liquid oxygen; numerical analysis; turbulent flow;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Mechatronic Sciences, Electric Engineering and Computer (MEC), Proceedings 2013 International Conference on
  • Conference_Location
    Shengyang
  • Print_ISBN
    978-1-4799-2564-3
  • Type

    conf

  • DOI
    10.1109/MEC.2013.6885488
  • Filename
    6885488