Numerical Analysis of Multi-Phase Flow around Supercavitating Body at Various Cavitator Angle of Attack and Ventilation Mass Flux
Abstract
:1. Introduction
2. Governing Equation and Numerical Method
2.1. Governing Equations
2.2. Numerical Method for Homogeneous Mixture Model
2.3. Turbulence Model
3. Ventilated Supercavitation Achievement
4. Numerical Results
4.1. Natural Cavitation
4.2. Ventilated Cavitation
4.3. Cavitation Shape with Cavitator Angle of Attack
4.4. Cavitation and Drag Change According to Speed Variation
4.5. Ventilated Cavitation with High Speed Underwater Vehicle
5. Conclusions
Author Contributions
Funding
Conflicts of Interest
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Kim, D.-H.; Paramanantham, S.S.; Park, W.-G. Numerical Analysis of Multi-Phase Flow around Supercavitating Body at Various Cavitator Angle of Attack and Ventilation Mass Flux. Appl. Sci. 2020, 10, 4228. https://doi.org/10.3390/app10124228
Kim D-H, Paramanantham SS, Park W-G. Numerical Analysis of Multi-Phase Flow around Supercavitating Body at Various Cavitator Angle of Attack and Ventilation Mass Flux. Applied Sciences. 2020; 10(12):4228. https://doi.org/10.3390/app10124228
Chicago/Turabian StyleKim, Dong-Hyun, SalaiSargunan S Paramanantham, and Warn-Gyu Park. 2020. "Numerical Analysis of Multi-Phase Flow around Supercavitating Body at Various Cavitator Angle of Attack and Ventilation Mass Flux" Applied Sciences 10, no. 12: 4228. https://doi.org/10.3390/app10124228
APA StyleKim, D. -H., Paramanantham, S. S., & Park, W. -G. (2020). Numerical Analysis of Multi-Phase Flow around Supercavitating Body at Various Cavitator Angle of Attack and Ventilation Mass Flux. Applied Sciences, 10(12), 4228. https://doi.org/10.3390/app10124228