SIMULATION AND EXPERIMENT OF BUBBLY FLOW INSIDE THROTTLING GROOVE

被引:8
作者
FU Xin DU XUewen ZOU Jun YANG Huayong SlaIe Key Laboralory of FIuid Power Transmission and ControlZhejiang UniverSityHangzhou China JI Hong School of Fluid Power and Control EngineerngLanzhou University of TechnologyLanzhou China [310027 ,730050 ]
机构
关键词
Pressure dist ibution; Throttling groove; Valve; Cavitation; Noise;
D O I
暂无
中图分类号
TB126 [工程流体力学];
学科分类号
080704 ;
摘要
<正>The relationship between pressure distribution and cavitation(noise)inside throttling groove is investigated by numerical simulation and experimental method.A valve pocket with several transducers is performed to detect the pressure distributions inside the valve chamber,and the results fit quite well with the computational fluid dynamics(CFD)analysis.High-speed imaging techniques are employed to investigate the cavitation mechanisms,in particular bubble inception and cluster formation near the throttling groove.A spectrum analyzer is used to measure the sound pressure level of noise generated by the bubble flow.It is found that the pressure distributions inside the groove are sensitive to the valve port configuration and back pressure.The pressure distribution determines the bubble size and number passing through the valve grooves and the sound pressure level of noise in- duced by collapsing bubbles.The inlet pressure mainly affects the saturation degree of bubbly flow inside the groove and the intensity of sound pressure level accordingly.
引用
收藏
页码:37 / 41
页数:5
相关论文
共 2 条
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EXPERIMENTS IN FLUIDS, 2002, 33 (05) :620-628
[2]  
Effect of Cavitation in Water Hydraulic Poppet Valves[J] . Shigeru Oshima,Timo Leino,Matti Linjama,Kari Tapio Koskinen,Matti Juhani Vilenius.International Journal of Fluid Power . 2001 (3)