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JABLONSKÁ, J. KOZUBKOVÁ, M. HIMR, D. WEISZ, M.
Original Title
Methods of Experimental Investigation of Cavitation in a Convergent - Divergent Nozzle of Rectangular Cross Section
Type
journal article in Web of Science
Language
English
Original Abstract
Cavitation is a phenomenon with both positive and negative effects and with dynamic manifestations in hydraulic, food, chemical and other machinery. This article deals with the detection and dynamic behavior of cavitation clouds in water flows through a rectangular cross-section convergent-divergent nozzle. Cavitation was measured by methods applicable in engineering practice. Pressure, flow rate, noise, vibration, and amount of air dissolved in the liquid were measured and cavitation region was recorded with a high-speed camera. Evaluation of acquired images in connection with measured pressure pulsations and mechanical vibrations was performed with the use of the FFT method. In certain cases, dimensionless parameters were used to generalize the measurements. The results will be used to specify multiphase mathematical cavitation model parameters.
Keywords
Cavitation;diagnostics;experiment;dimensionless analysis;evaluation
Authors
JABLONSKÁ, J.; KOZUBKOVÁ, M.; HIMR, D.; WEISZ, M.
Released
1. 8. 2016
Publisher
De Gruyter Open
ISBN
1335-8871
Periodical
Measurement Science Review
Year of study
16
Number
4
State
Slovak Republic
Pages from
197
Pages to
204
Pages count
8
URL
https://www.sciendo.com/article/10.1515/msr-2016-0024
Full text in the Digital Library
http://hdl.handle.net/11012/203169
BibTex
@article{BUT171164, author="Jana {Jablonská} and Milada {Kozubková} and Daniel {Himr} and Michal {Weisz}", title="Methods of Experimental Investigation of Cavitation in a Convergent - Divergent Nozzle of Rectangular Cross Section", journal="Measurement Science Review", year="2016", volume="16", number="4", pages="197--204", doi="10.1515/msr-2016-0024", issn="1335-8871", url="https://www.sciendo.com/article/10.1515/msr-2016-0024" }