Numerical Simulation of a Spool Valve in Gaseous Cavitation Conditions

IF 0.7 Q4 ENGINEERING, MECHANICAL
E. Frosina, G. Marinaro, A. Amoresano, A. Senatore
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引用次数: 0

Abstract

Spool valves are subject to a deteriorated performance and noise due to the occurrence of cavitation phenomena. It is well known that cavitation effects the performance of the component and causes an unwanted noise. The noise sound levels are influenced by many parameters like geometries and opening areas. In this paper a simple valve body made in plexiglass has been tested analyzing the cavitating area in U-grooves. A dedicated test rig has been equipped with a high-speed camera to acquire images of the phenomenon. A numerical three-dimensional CFD model has been built up using the commercial code. Experimental imagines have been compared with the numerical results showing a high accuracy on the prediction of the gaseous cavitation. The numerical results allow separate examination of several distinctive flow characteristics, which show favorable consistency with experimental observation and a periodic evolution of cavitation structure.
滑阀在气体空化条件下的数值模拟
由于空穴现象的发生,滑阀的性能和噪音会下降。众所周知,空化会影响元件的性能并引起不必要的噪声。噪声声级受许多参数的影响,如几何形状和开口面积。本文对一个简单的有机玻璃阀体进行了试验,分析了u形槽内的空化面积。一个专门的试验台配备了高速摄像机来获取这种现象的图像。利用商业规范建立了三维数值CFD模型。将实验结果与数值结果进行了比较,表明对气穴化的预测具有较高的精度。数值结果可以单独考察几种不同的流动特性,这些特性与实验观察和空化结构的周期性演变具有良好的一致性。
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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