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TECHNICAL BRIEFS

Scaling Laws of Hydrodynamic Noise Generation for a Simple Fluid Valve Model

[+] Author and Article Information
Matjaz Prek

Faculty of Mechanical Engineering, University of Ljubljana, Askerceva 6, SI-1000 Ljubljana, Slovenia

J. Vib. Acoust 122(3), 330-331 (Feb 01, 2000) (2 pages) doi:10.1115/1.1303122 History: Received September 01, 1999; Revised February 01, 2000
Copyright © 2000 by ASME
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References

Fuchs,  H. V., 1983, “Generation and Control of Noise in Water Supply Installations: Part 1: Fundamental Aspects,” Applied Acoustics, 16, pp. 325–346.
Fuchs,  H. V., and Michalke,  A., 1973, “Introduction to Aerodynamic Noise Theory,” Progress in Aerospace Sciences, 14, pp. 227–297.
Fuchs, H. V., 1985, “Sound generation in liquid fluid valves,” Fraunhofer Institut for Bauphysik, IBP Report BS 118, Stuttgart, Germany.
Fuchs, H. V., 1985, “Sound generation in liquid fluid valves,” Fraunhofer Institut for Bauphysik, IBP Report BS 119, Stuttgart, Germany.
Fuchs,  H. V., 1972, “Space correlations of the fluctuating pressure in subsonic turbulence jets,” Journal of Sound and Vibration, 1, pp. 77–99.
Fuchs,  H. V., 1993, “Generation and Control of Noise in Water Supply Installations: Part 2: Sound Source Mechanisms,” Applied Acoustics, 38, pp. 59–85.
Prek,  M., and Novak,  P., 1999, “Untersuchungen von Armaturengeraeuschen mit Ventilmodell und direkten Messungen des Wasserschalls,” Bauphysik, 21, pp. 77–83.
Prek, M., and Novak, P., 1998, “Sound Generation Measurements in Hydraulic Networks,” Proceedings, 3rd International SITHOK Congress, Maribor, Slovenija, pp. 309–318.

Figures

Grahic Jump Location
Observed versus predicted values of the sound pressure level (in dB re 1 μPa) for small valve opening (s<d)

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