DocumentCode :
3666801
Title :
Eulerian two-phase modeling of cavitation for high-speed UUV using different turbulence models
Author :
Linmin Li;Qingquan Jia;Zhongqiu Liu;Baokuan Li;Zhiqiang Hu;Yang Lin
Author_Institution :
School of Materials and Metallurgy, Northeastern University, Shenyang, China
fYear :
2015
fDate :
6/1/2015 12:00:00 AM
Firstpage :
1247
Lastpage :
1252
Abstract :
The cavitation will occur when the speed of UUV(Unmanned Underwater Vehicle) exceeds the threshold. The research of cavitation is significant for the high-speed UUV research. Two different turbulence models are respectively used to study the time-averaged and instantaneous cavitation two-phase flows in the present work. The Euler-Euler approach is used to describe the phase equations of the water and vapor. The Schnerr and Sauer model is used to describe the mass transfer due to the cavitation. Firstly, the time-averaged cavitation flow in a cylindrical model is simulated using the renormalization-group(RNG) k-ε turbulence model. Good quantitative agreement with experimental data is obtained both for the vapor volume fraction and static pressure of different cavitation numbers. Next, transient computation is performed using the large eddy simulation(LES) with Smagorinsky subgrid scale model(SGS) to study the time-dependent cavitation flow of a hydrofoil model. The predicted transient cavitation behavior and cavities shedding in the hydrofoil model agree well with experimental observations. Thus, the LES can be effectively used for studying the cavity shedding and the instantaneous cavitation flow.
Keywords :
"Mathematical model","Cavity resonators","Computational modeling","Drag","Liquids","Solid modeling","Force"
Publisher :
ieee
Conference_Titel :
Cyber Technology in Automation, Control, and Intelligent Systems (CYBER), 2015 IEEE International Conference on
Print_ISBN :
978-1-4799-8728-3
Type :
conf
DOI :
10.1109/CYBER.2015.7288122
Filename :
7288122
Link To Document :
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