Analysis of the pressure reduction mechanism in multi-stage counter-flow channels

被引:0
|
作者
Jin, Haozhe [1 ,2 ]
Xu, Zhansong [1 ]
Zhang, Jiongming [2 ]
Liu, Xiaofei [1 ]
Wang, Chao [1 ]
机构
[1] Zhejiang Sci Tech Univ, Inst Flow Induced Corros, Hangzhou 310018, Zhejiang, Peoples R China
[2] Hefei Gen Machinery Res Inst, Hefei 230088, Anhui, Peoples R China
基金
中国国家自然科学基金;
关键词
Multi-stage hedging flow channel; Pressure drop; Energy dissipation; Turbulence characteristic; Structural parameters; NUMERICAL-SIMULATION; CAVITATION FLOW; VALVE;
D O I
10.1016/j.nucengdes.2024.113379
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
In the construction and operation of supercritical units, valves are the most commonly used equipment in power plants. Cavitation erosion, turbulence and other phenomena usually occur in the valve, which seriously threaten the operation stability of the control system. In this paper, the energy dissipation characteristic parameters under different structural parameters are evaluated in order to achieve high pressure difference and high flow channel design. The results show that there is a significant increase in turbulence intensity at the exit due to the influence of flow passage mutation. The Q values of the first two stages are smaller than that of the last stage. The energy dissipation of the first two stages dominates the energy loss of the entire runner. Meanwhile the cavitation effect at the outlet is the most obvious. The U-groove of 3.5 mm, the outlet diameter of 15 mm and the equidistant distribution, are the optimal configuration in the optimization of multi-stage hedge runner for high pressure difference and high flow.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Modal reduction and vibration analysis for a multi-stage geared rotors system
    Han, Jianming
    Yang, Yi
    Ma, Qingya
    Wang, Zihua
    Dai, Yiping
    Zhendong yu Chongji/Journal of Vibration and Shock, 2021, 40 (04): : 43 - 50
  • [32] ANALYSIS OF REDUCTION RATE OF SINTER BY MULTI-STAGE ZONE REACTION MODEL
    NAITO, M
    OKAMOTO, A
    ONO, K
    HAYASHI, Y
    INOUE, Y
    TRANSACTIONS OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1984, 24 (07) : B200 - B200
  • [33] INFLUENCE OF HYDROGEN CONTENT OF REDUCING GAS ON COUNTER-FLOW REDUCTION OF A LORRAINE AGGLOMERATE
    GABALLAH, I
    GAUTHIER, F
    OFFROY, C
    RIST, A
    REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 1973, 70 (09): : 567 - 575
  • [34] Influence of a double vortex chamber on temperature reduction in a counter-flow vortex tube
    Samruaisin, P.
    Chuwattanakul, V
    Pimsarn, M.
    Promthaisong, P.
    Saysroy, A.
    Chokphoemphun, S.
    Kumar, M.
    Eiamsa-ard, S.
    CASE STUDIES IN THERMAL ENGINEERING, 2021, 28
  • [35] Temperature and pressure measurements at cold exit of counter-flow vortex tube with flow visualization of reversed flow
    Mohd Hazwan bin Yusof
    Hiroshi Katanoda
    Hiromitsu Morita
    Journal of Thermal Science, 2015, 24 : 67 - 72
  • [36] Temperature and Pressure Measurements at Cold Exit of Counter-flow Vortex Tube with Flow Visualization of Reversed Flow
    Bin Yusof, Mohd Hazwan
    Katanoda, Hiroshi
    Morita, Hiromitsu
    JOURNAL OF THERMAL SCIENCE, 2015, 24 (01) : 67 - 72
  • [37] Temperature and Pressure Measurements at Cold Exit of Counter-flow Vortex Tube with Flow Visualization of Reversed Flow
    Mohd Hazwan bin Yusof
    Hiroshi Katanoda
    Hiromitsu Morita
    Journal of Thermal Science, 2015, 24 (01) : 67 - 72
  • [38] AN EXPERIMENTAL STUDY OF THE EFFECT OF PRESSURE INLET GAS ON A COUNTER-FLOW VORTEX TUBE
    Kargaran, Mahyar
    Farzaneh-Gord, Mahmood
    FRONTIERS IN HEAT AND MASS TRANSFER, 2013, 4 (01):
  • [39] Multi-stage segmentation of optical flow field
    Choi, JG
    Kim, SD
    SIGNAL PROCESSING, 1996, 54 (02) : 109 - 118
  • [40] Numerical analysis of flow and temperature characteristics in a high multi-stage pressure reducing valve for hydrogen refueling station
    Jin, Zhi-jiang
    Chen, Fu-qiang
    Qian, Jin-yuan
    Zhang, Ming
    Chen, Li-long
    Wang, Fei
    Fei, Yang
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2016, 41 (12) : 5559 - 5570