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Numerical prediction of steady and unsteady tip vortex cavitation on hydrofoils


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1. Ansys/Fluent Release 12.0 Users Manual, 2009Search in Google Scholar

2. Flaszyński P., Szantyr J., Dymarski P., Kraskowski M.: Numerical Prediction of Vortex Generated by Hydrofoil, Proc. Intern. Symposium on Marine Propellers, Trondheim, Norway, June 22-24, 2009Search in Google Scholar

3. Flaszyński P., Szantyr J., Biernacki R., Dymarski P., Kraskowski M.: A Method for the Accurate Numerical Prediction of the TipVortices Shed from Hydrofoils, Polish Maritime Research No. 2(65), Vol. 17, 2010, pp. 10-1710.2478/v10012-010-0012-5Search in Google Scholar

4. Szantyr J.A., Flaszyński P.,Tesch K., Suchecki W., Alabrudziński S.: An Experimental and Numerical Study of TipVortex Cavitation, Polish Maritime Research No. 4(71), Vol. 18, 2011, pp. 14-2210.2478/v10012-011-0021-zSearch in Google Scholar

5. Szantyr J.A., Biernacki R., Flaszyński P., Dymarski P., Kraskowski M.: An Experimental and Numerical Study of theVortices Generated by Hydrofoils, Polish Maritime Research No. 3(61), Vol. 16, 2009, pp. 11-17]10.2478/v10012-008-0027-3Search in Google Scholar

6. Yakhot V., Orszag S.A., Renormalization Group of Turbulence: I. Basic Theory, Journal of Scientific Computing, 1(1):1-51, 1986Search in Google Scholar

7. Zwart P.J., Gerber A.G., Belamri T., A Two-Phase FlowModel for Predicting Cavitation Dynamics, Fifth International Conference on Multiphase Flow, Yokohama, Japan, 2004Search in Google Scholar

ISSN:
1233-2585
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Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences