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Article

Compressible Two-Phase Viscous Flow Investigations of Cavitation Dynamics for the ITTC Standard Cavitator

1
VTT Technical Research Centre of Finland Ltd., 02150 Espoo, Finland
2
ABB Marine and Ports, 00980 Helsinki, Finland
3
Department of Mechanical Engineering, Aalto University, 02150 Espoo, Finland
*
Author to whom correspondence should be addressed.
Appl. Sci. 2020, 10(19), 6985; https://doi.org/10.3390/app10196985
Submission received: 4 September 2020 / Revised: 23 September 2020 / Accepted: 28 September 2020 / Published: 7 October 2020
(This article belongs to the Special Issue New Advances of Cavitation Instabilities)

Abstract

In this paper, the ITTC Standard Cavitator is numerically investigated in a cavitation tunnel. Simulations at different cavitation numbers are compared against experiments conducted in the cavitation tunnel of SVA Potsdam. The focus is placed on the numerical prediction of sheet-cavitation dynamics and the analysis of transient phenomena. A compressible two-phase flow model is used for the flow solution, and two turbulence closures are employed: a two-equation unsteady RANS model, and a hybrid RANS/LES model. A homogeneous mixture model is used for the two phases. Detailed analysis of the cavitation shedding mechanism confirms that the dynamics of the sheet cavitation are dictated by the re-entrant jet. The break-off cycle is relatively periodic in both investigated cases with approximately constant shedding frequency. The CFD predicted sheet-cavitation shedding frequencies can be observed also in the acoustic measurements. The Strouhal numbers lie within the usual ranges reported in the literature for sheet-cavitation shedding. We furthermore demonstrate that the vortical flow structures can in certain cases develop striking cavitating toroidal vortices, as well as pressure wave fronts associated with a cavity cloud collapse event. To our knowledge, our numerical analyses are the first reported for the ITTC standard cavitator.
Keywords: hydrodynamic cavitation; compressible two-phase flow; turbulence modelling; system instabilities hydrodynamic cavitation; compressible two-phase flow; turbulence modelling; system instabilities

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MDPI and ACS Style

Viitanen, V.M.; Sipilä, T.; Sánchez-Caja, A.; Siikonen, T. Compressible Two-Phase Viscous Flow Investigations of Cavitation Dynamics for the ITTC Standard Cavitator. Appl. Sci. 2020, 10, 6985. https://doi.org/10.3390/app10196985

AMA Style

Viitanen VM, Sipilä T, Sánchez-Caja A, Siikonen T. Compressible Two-Phase Viscous Flow Investigations of Cavitation Dynamics for the ITTC Standard Cavitator. Applied Sciences. 2020; 10(19):6985. https://doi.org/10.3390/app10196985

Chicago/Turabian Style

Viitanen, Ville M., Tuomas Sipilä, Antonio Sánchez-Caja, and Timo Siikonen. 2020. "Compressible Two-Phase Viscous Flow Investigations of Cavitation Dynamics for the ITTC Standard Cavitator" Applied Sciences 10, no. 19: 6985. https://doi.org/10.3390/app10196985

APA Style

Viitanen, V. M., Sipilä, T., Sánchez-Caja, A., & Siikonen, T. (2020). Compressible Two-Phase Viscous Flow Investigations of Cavitation Dynamics for the ITTC Standard Cavitator. Applied Sciences, 10(19), 6985. https://doi.org/10.3390/app10196985

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