Systematic validation study of an unsteady cavitating flow over a hydrofoil uising conditional averaging: LES and PIV
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Published version
Author(s)
Ivashchenko, Elizaveta
Hrebtov, Mikhail
Timoshevskiy, Mikhail
Pervunin, Konstantin
Mullyadzhanov, Rustam
Type
Journal Article
Abstract
We present results of Large-eddy simulations (LES) modeling of steady sheet and unsteady cloud cavitation on a two-dimensional hydrofoil which are validated against Particle image velocimetry (PIV) data. The study is performed for the angle of attack of 9° and high Reynolds numbers ReC of the order of 106 providing a strong adverse pressure gradient along the surface. We employ the Schnerr–Sauer and Kunz cavitation models together with the adaptive mesh refinement in critical flow regions where intensive phase transitions occur. Comparison of the LES and visualization results confirms that the flow dynamics is adequately reproduced in the calculations. To correctly match averaged velocity distributions, we propose a new methodology based on conditional averaging of instantaneous velocity fields measured by PIV which only provides information on the liquid phase. This approach leads to an excellent overall agreement between the conditionally averaged fields of the mean velocity and turbulence intensity obtained experimentally and numerically. The benefits of second-order discretization schemes are highlighted as opposed to the lower-order TVD scheme.
Date Acceptance
2021-10-18
Citation
Journal of Marine Science and Engineering, 9 (11), pp.1193-1193
ISSN
2077-1312
Publisher
MDPI
Start Page
1193
End Page
1193
Journal / Book Title
Journal of Marine Science and Engineering
Volume
9
Issue
11
Copyright Statement
Copyright: © 2021 by the authors.
Licensee MDPI, Basel, Switzerland.
This article is an open access article
distributed under the terms and
conditions of the Creative Commons
Attribution (CC BY) license (https://
creativecommons.org/licenses/by/
4.0/).
Licensee MDPI, Basel, Switzerland.
This article is an open access article
distributed under the terms and
conditions of the Creative Commons
Attribution (CC BY) license (https://
creativecommons.org/licenses/by/
4.0/).
License URL
Identifier
https://www.mdpi.com/2077-1312/9/11/1193
Subjects
Science & Technology
Technology
Physical Sciences
Engineering, Marine
Engineering, Ocean
Oceanography
Engineering
cavitation
hydrofoil
large-eddy simulations
particle image velocimetry
LARGE-EDDY SIMULATION
NUMERICAL-SIMULATION
MODEL
DYNAMICS
SCHEMES
BUBBLE
SHEET
0405 Oceanography
0704 Fisheries Sciences
0911 Maritime Engineering
Publication Status
Published online
Date Publish Online
2021-10-27