Setup of a High-Speed Optical System for the Characterization of Flow Instabilities Generated by Cavitation

Author:

Cervone Angelo1,Bramanti Cristina23,Torre Lucio1,Fotino Domenico,d’Agostino Luca4

Affiliation:

1. Alta S.p.A., Via Gherardesca 5, 56121 Pisa, Italy

2. Post-Doc Fellow

3. ESA-ESTEC, Keplerlaan 1, Nordwijk, The Netherlands

4. Department of Aerospace Engineering, University of Pisa, Via G. Caruso, 56100 Pisa, Italy

Abstract

The present paper illustrates the setup and the preliminary results of an experimental investigation of cavitation flow instabilities carried out by means of a high-speed camera on a three-bladed inducer in the cavitating pump rotordynamic test facility (CPRTF) at Alta S.p.A. The brightness thresholding technique adopted for cavitation recognition is described and implemented in a semi-automatic algorithm. In order to test the capabilities of the algorithm, the mean frontal cavitating area has been computed under different operating conditions. The tip cavity length has also been evaluated as a function of time. Inlet pressure signal and video acquisitions have been synchronized in order to analyze possible cavitation fluid-dynamic instabilities both optically and by means of pressure fluctuation analysis. Fourier analysis showed the occurrence of a cavity length oscillation at a frequency of 14.7Hz, which corresponds to the frequency of the rotating stall instability detected by means of pressure oscillation analysis.

Publisher

ASME International

Subject

Mechanical Engineering

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