Cavitation in a non-circular opening spool valve with U-grooves

Author:

Zou J1,Fu X1,Du X W1,Ruan X D1,Ji H2,Ryu S3,Ochiai M3

Affiliation:

1. The State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou, People's Republic of China

2. School of Fluid Power and Control Engineering, Lanzhou University of Technology, Lanzhou, People's Republic of China

3. Technical Research Laboratory, Hitachi Construction Machinery Co. Ltd., Tsuchiura, Japan

Abstract

A numerical method and an experimental analysis were applied to obtain a better understanding on the characteristics of cavitation inside the non-circular opening spool valve with U-grooves. The relationship between structural parameters and cavitating flow inside the valve, as well as acoustic noise, are studied. A two-staged flow resistance model was brought forward for the qualitative prediction of the cavitation intensity and incipient cavitation number inside the valve. The throttling effect of the first throttling stage plays an important role in the incipience and development of cavitation inside the valve. The reduction of pressure loss caused by the first throttling stage benefits to the cavitation resistance. With the decrease of cavitation number, the acoustic noise level increases until the former reaches the critical value (σ=0.04). Once cavitation number is below the critical value, the flowrate of the valve is choked, and the acoustic noise level decreases instead.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Energy Engineering and Power Technology

Reference19 articles.

1. Some Cavitation Effects in Spool Valve Orifices

2. 4 Lichtarowicz A., Pearce I. D. Cavitation and aeration effects in long orifices. In the Cavitation Conference, Edinburgh, 3–5 September 1974, pp. 129–144 (Institution of Mechanical Engineers).

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