Research Article
2004, Leroux, J.B., Astolfi, J.A. and Billard, J.Y., "An Experimental Study of Unsteady Partial Cavitation," J. Fluids Eng., Vol.126, pp.94-101.
10.1115/1.16278351965, Numachi, F., Oba, R. and Chida, I., "Effect of Surface Roughness on Cavitatiion Performance of Hydrofoils -Report 1," J. Basic Eng., Vol.87, No.2, pp.495-503.
10.1115/1.36505832003, Stutz, B., "Influence of Roughness on the Two-Phase Flow Structure of Sheet Cavitation," J. Fluids Eng., Vol.125, pp.652-659.
10.1115/1.15962402009, Williams, M., Kawakami, E., Arndt, R. and Amromin, E., "Effects of Surface Characteristics on Hydrofoil Cavitation," In: Proceedings of the 7th International Symposium on Cavitation CAV2009, Michigan, USA.
2016, Churkin, S., Pervunin, K.S. and Kravtsova, A. et al., "Cavitation on NACA0015 hydrofoils with different wall roughness: high-speed visualization of the surface texture effects," J. Vis., Vol.19, pp.587-590.
10.1007/s12650-016-0355-92018, Hao, J., Zhang, M. and Huang, X., "The influence of surface roughness on cloud cavitation flow around hydrofoils," Acta Mech. Sin., Vol.34, pp.10-21.
10.1007/s10409-017-0689-02011, Echouchene, F., Belmabrouk, H., Le Penven, L. and Buffat, M., "Numerical simulation of wall roughness effects in cavitating flow," Intl. J. of Heat and Fluid Flow, Vol.32, pp.1068-1075.
10.1016/j.ijheatfluidflow.2011.05.0102020, Asnaghi, A. and Bensow, R.E., "Impact of Leading Edge Roughness in Cavitation Simulations around a Twisted Foil," Fluids, Vol.5, No.243, pp.1-18.
10.3390/fluids50402432021, Sun, Z.C., Mao, Y.F. and Fan, M.H., "Performance optimization and investigation of flow phenomena on tidal turbine blade airfoil considering cavitation and roughness," Appl. Ocean Res., Vol.106, pp.1-17.
10.1016/j.apor.2020.1024631997, Kawanami, Y., Kato, H., Yamaguchi, H., Tanimura, M. and Tagaya, Y., "Mechanism and Control of Cloud Cavitation," J. Fluids Eng., Vol.119, pp.788-794.
10.1115/1.28194992003, Coutier, D.O., Reboud, J.L. and Delannoy, Y., "Numerical Simulation of the Unsteady Behaviour of Cavitating Flows," Int J. Numerical Methods in Fluids, Vol.42, pp.527-548.
10.1002/fld.5302001, Schnerr, G.H. and Sauer, J., "Physical and Numerical Modeling of Unsteady Cavitation Dynamics. In: Proceedings of 4th International Conference on Multiphase Flow," New Orleans, USA.
2024, Karthik, V. and Lee, J.C., "Numerical Study of Unsteady Cavitation Characteristics Around NACA66 Hydrofoil Using LES Model," J. Computational Fluids Eng.,Vol.29, pp.90-99.
10.6112/kscfe.2024.29.1.0901999, Nicoud, F. and Ducros, F., "Subgrid-Scale Stress Modelling Based on the Square of the Velocity Gradient Tensor," Flow, Turbul. and Combustion, Vol.62, pp.183-200.
10.1023/A:10099954260011998, Patel, V. C., "Perspective: Flow at High Reynolds Number and Over Rough Surfaces-Achilles Heel of CFD," J. Fluids Eng., Vol.120, pp.434-444.
10.1115/1.28206822002, Sagaut, P., Large Eddy Simulation for Incompressible Flows, Third edition, Springer, New york, USA.
2014, Bark, G. and Bensow, R.E., Hydrodynamic Processes Controlling Cavitation Erosion. In: Kim, KH., Chahine, G., Franc, JP., Karimi, A. (eds) Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction, Fluid Mechanics and Its Applications, Vol.106, pp.185-220, Springer, Dordrecht, Netherlands.
10.1007/978-94-017-8539-6_8- Publisher :Korean Society for Computational Fluids Engineering
- Publisher(Ko) :한국전산유체공학회
- Journal Title :Journal of Computational Fluids Engineering
- Journal Title(Ko) :한국전산유체공학회지
- Volume : 29
- No :3
- Pages :145-162
- Received Date : 2024-08-07
- Revised Date : 2024-08-31
- Accepted Date : 2024-09-11
- DOI :https://doi.org/10.6112/kscfe.2024.29.3.145


Journal of Computational Fluids Engineering








