留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

加力燃油泵隔舌倒圆抑制分离的数值模拟

薛梅新 朴英

薛梅新, 朴英. 加力燃油泵隔舌倒圆抑制分离的数值模拟[J]. 航空动力学报, 2012, 27(12): 2799-2804.
引用本文: 薛梅新, 朴英. 加力燃油泵隔舌倒圆抑制分离的数值模拟[J]. 航空动力学报, 2012, 27(12): 2799-2804.
XUE Mei-xin, PIAO Ying. Numerical simulation on separation control by filleting casing tongue of after-burning fuel pump[J]. Journal of Aerospace Power, 2012, 27(12): 2799-2804.
Citation: XUE Mei-xin, PIAO Ying. Numerical simulation on separation control by filleting casing tongue of after-burning fuel pump[J]. Journal of Aerospace Power, 2012, 27(12): 2799-2804.

加力燃油泵隔舌倒圆抑制分离的数值模拟

Numerical simulation on separation control by filleting casing tongue of after-burning fuel pump

  • 摘要: 采用动态亚格子应力模型对加力燃油泵内非定常流场进行大涡模拟,探讨了原隔舌空蚀机理,并研究了不同倒圆半径下泵隔舌附近的瞬时流动规律及流量扬程特性.计算结果表明:小流量工况原隔舌处分离产生的强剪切涡会诱发空化,涡脱落形成的分离再附位置与空蚀破坏核心区域相符;小流量工况下,隔舌倒圆在扩散管内形成转向涡,消除了隔舌壁面分离绕流及附着剪切涡,4mm倒圆半径可以避免空化;设计流量范围内隔舌倒圆提高了泵出口扬程,流量越小扬程增幅越大,小流量工况时扬程增幅达3%.

     

  • [1] Friedrichs J,Kosyna G.Rotating cavitation in a centrifugal pump impeller of low specific speed[J].Journal of Fluids Engineering,2002,124(2):356-362.
    [2] Medvitz R B,Kunz R F,Boger D A,et al.Performance analysis of cavitating flow in centrifugal pumps using multiphase CFD[J].Journal of Fluids Engineering,2002,124(2):377-383.
    [3] Coutier-Delgosha O,Fortes-Patella R,Reboud J L,et al.Experimental and numerical studies in a centrifugal pump with two-dimensional curved blades in cavitating condition[J].Journal of Fluids Engineering,2003,125(6):970-978.
    [4] 罗先武,张瑶,彭俊奇,等.叶轮进口几何参数对离心泵空化性能的影响[J].清华大学学报:自然科学版,2008,48(5):836-839.LUO Xianwu,ZHANG Yao,PENG Junqi,et al.Effect of impeller inlet geometry on centrifugal pump cavitation performance[J].Journal of Tsinghua University:Science and Technology,2008,48(5):836-839.(in Chinese)
    [5] 王勇,刘厚林,袁寿其,等.叶片进口冲角对离心泵空化特 性的影响[J].流体机械,2011,39(4):17-20.WANG Yong,LIU Houlin,YUAN Shouqi,et al.Effect of blade incidence angle on cavitation characteristics in centrifugal pump[J].Fluid Machinery,2011,39(4):17-20.(in Chinese)
    [6] 张卓.门槽水流的数值模拟及其空化特性分析[D].南京:河海大学,2007.ZHANG Zhuo.The study on the flow field near gate slot by numerical simulation[D].Nanjing:Hohai University,2007.(in Chinese)
    [7] Majidi K.Numerical study of unsteady flow in a centrifugal pump[J].Journal of Turbomachinery,2005,127(2):363-371.
    [8] Asuaje M,Bakir F,Tremante A,et al.3D quasi-unsteady flow simulation in a centrifugal pump:comparison with the experimental results[C]//Proceedings of 2004 ASME Heat Transfer/Fluids Engineering Summer Conference.Charlotte,USA:ASME,2004:1081-1090.
    [9] Nagahara T,Inoue Y,Sato T,et al.Investigation of the flow field in a multistage pump by using LES[C]//Proceedings of 2005 ASME Fluids Engineering Division Summer Meeting.Houston,USA:ASME,2005:1321-1329.
    [10] Byskov R K,Jacobsen C B,Pedersen N.Flow in a centrifugal pump impeller at design and off-design conditions:Part Ⅱ large eddy simulations[J].Journal of Fluids Engineering,2003,125(1):73-83.
    [11] Lilly D.A proposed modification of the germano subgrid-scale closure method[J].Physics of Fluids A,1992,4(3):633-635.
    [12] Germano M.A dynamic subgrid-scale eddy viscosity model[J].Physics of Fluids A,1991,3(7):1760-1765.
    [13] Hunt J,Wray A A,Moin P.Eddies,streams,and convergence zones in turbulent flows[R].[S.l.]:Center for Turbulence Research,Report CTR-S88,1988.
  • 加载中
计量
  • 文章访问数:  1554
  • HTML浏览量:  97
  • PDF量:  1168
  • 被引次数: 0
出版历程
  • 收稿日期:  2011-11-26
  • 刊出日期:  2012-12-28

目录

    /

    返回文章
    返回