Numerical prediction of cavitation erosion on a ship propeller in model- and full-scale

Author:

Peters Andreas,Lantermann Udo,el Moctar Ould

Funder

German Research Foundation

German Federal Ministry of Economic Affairs and Energy

Publisher

Elsevier BV

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanics of Materials,Condensed Matter Physics

Reference48 articles.

1. K. Kimura, T. Kawamura, A. Fujii, T. Taketani, Z. Huang, Study on unsteady cavitating flow simulation around marine propeller using a rans cfd code, in: Proceedings of the 7th International Symposium on Cavitation, CAV2009, Ann Arbor, Michigan, USA, 2009.

2. N.-X. Lu, U. Svennberg, G. Bark, R.E. Bensow, Numerical simulations of the cavitating flow on a marine propeller, in: Proceedings of the 8th International Symposium on Cavitation, CAV2012, Singapore, 2012.

3. C.-T. Hsiao, J. Ma, G.L. Chahine, Simulation of sheet and tip vortex cavitation on a rotating propeller using a multiscale two-phase flow model, in: Proceedings of the 4th International Symposium on Marine Propulsors, Austin, Texas, USA, 2015.

4. N. Sakamoto, H. Kamiirisa, Estimations of propeller cavitation noise by cfd, in: Japanese Society of Naval Architects and Ocean Engineers Annual Autumn Meeting, vol. 21, Tokyo, Japan, 2015.

5. S.J. Schmidt, M. Mihatsch, M. Thalhamer, N.A. Adams, Assessment of the prediction capability of a thermodynamic cavitation model for the collapse characteristics of a vapor-bubble cloud, in: Proceedings of the WIMRC 3rd International Cavitation Forum, 2011.

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