Influence of nozzle exit tip thickness on the performance and flow field of jet pump

被引:0
|
作者
Xinping Long
Ning Han
Qian Chen
机构
[1] Wuhan University,School of Power and Mechanical Engineering
[2] Hubei Provincial Key Lab of Fluid Machinery and Power Engineering Equipment Technology,undefined
关键词
Jet pump; Nozzle exit tip thickness; Numerical simulation; Tip vortex;
D O I
暂无
中图分类号
学科分类号
摘要
The influence of exit tip thickness of nozzle δe on the flow field and performance of a jet pump was studied numerically in this paper. It is found that δe has influence on the distribution of turbulence kinetic energy k. If δe is ignored, k takes the highest value but dissipates rapidly than that of nozzle with a certain tip thickness. δe also affect apparently the development of tip vortex, which will occur near the exit tip of nozzle. The bigger the δe is, the larger the vortex is. The tip vortex develops with the increase of flow rate ratio q. When q=1 and δe=0.6∼0.8mm, a small vortex will be found downstream the tip vortex. And a concomitant vortex happens down the tip vortex in the case of q=1 and δe=0.8mm. As q increases to 2, the downstream small vortex disappears and the concomitant vortex becomes bigger. It is also found that the tip vortex might interact with the possible backflow that formed in the throat tube and parts of suction chamber. The center of backflow was affect evidently by δe. With the increase of δe, the center of backflow under the same q will go downstream. When δe=0.4mm, the center of backflow goes farthest. Then, as the further increase of δe, the center of backflow will go back some distance. Although, δe has relatively great influence on the flow field within the jet pump, it exerts only a little impact on the performance of jet pump. When δe=0.2∼0.6mm, the jet pump possess better performance. In most case, it is reasonable to ignore the nozzle exit tip thickness in performance prediction for the purpose of simplicity.
引用
收藏
页码:1959 / 1965
页数:6
相关论文
共 50 条
  • [1] Influence of nozzle exit tip thickness on the performance and flow field of jet pump
    Long, Xinping
    Han, Ning
    Chen, Qian
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2008, 22 (10) : 1959 - 1965
  • [2] Numerical Investigation on the Influence of Nozzle Lip Thickness on the Flow Field and Performance of an Annular Jet Pump
    Long-Zhou Xiao
    Xin-Ping Long
    Xue-Long Yang
    Journal of Harbin Institute of Technology(New series), 2014, (03) : 59 - 67
  • [3] The Influence of Exit Nozzle Geometry on Sweeping Jet Actuator Performance
    Alam, Mobashera
    Kara, Kursat
    FLUIDS, 2022, 7 (02)
  • [4] Influence of Different Turbulence Models on Flow Field Simulation of Nozzle Adjustable Jet Pump
    Zhao Xu-He
    Yan Ting-Jun
    Wang Xiao-He
    PROCEEDINGS OF THE 2017 6TH INTERNATIONAL CONFERENCE ON ENERGY AND ENVIRONMENTAL PROTECTION (ICEEP 2017), 2017, 143 : 1021 - 1028
  • [5] Influence of External Jet on Hydraulic Performance and Flow Field Characteristics of Water Jet Propulsion Pump Device
    Wu, Jinxin
    Cheng, Li
    Luo, Can
    Wang, Chuan
    SHOCK AND VIBRATION, 2021, 2021
  • [6] Influence of initial conditions at the nozzle exit on the structure of round jet
    G. V. Kozlov
    G. R. Grek
    A. M. Sorokin
    Yu. A. Litvinenko
    Thermophysics and Aeromechanics, 2008, 15
  • [7] Influence of nozzle exit geometrical parameters on supersonic jet decay
    Mohanta, Prasanta Kumar
    Sridhar, B. T. N.
    Mishra, R. K.
    INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2023, 40 (02) : 215 - 222
  • [8] Influence of nozzle exit geometrical parameters on supersonic jet decay
    Mohanta, Prasanta Kumar
    Sridhar, B. T. N.
    Mishra, R. K.
    INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2021,
  • [9] Influence of initial conditions at the nozzle exit on the structure of round jet
    Kozlov, G. V.
    Grek, G. R.
    Sorokin, A. M.
    Litvinenko, Yu. A.
    THERMOPHYSICS AND AEROMECHANICS, 2008, 15 (01) : 55 - 68
  • [10] Optimization Study on Nozzle Selection Based on the Influence of Nozzle Parameters on Jet Flow Field Structure
    Zhang, Bin
    Zhu, Chencheng
    Li, Jianxun
    Wang, Hao
    Liu, Xiaolei
    Wang, Kan
    Applied Sciences (Switzerland), 2024, 14 (19):