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Development of a time domain prediction method for hull pressure fluctuation induced by marine propeller sheet cavitation with consideration of scattering effects
Authors:Jong-Do Kim  Suk-Yoon Hong  Jee-Hun Song
Institution:1. Department of Naval Architecture and Ocean Engineering, Seoul National University, 599 Gwanangno, Gwanak-gu, Seoul, Korea
2. Program of Naval Architecture and Ocean Engineering, College of Marine Technology, Chonnam National University, 386 Mipyeongro, Yeosu, Chonnam, 550-749, Korea
Abstract:Using a time domain acoustic analogy, we develop a method to predict the sound field and hull pressure fluctuation generated by unsteady sheet cavitation on marine propellers. Formulation 1A of Farassat is introduced to enhance theoretical understanding of this work, and it is applied to modeling the scattered sound field created by the fuselage boundary. To express the direct sound field resulting from sheet cavitation, a new solution is studied which considers the Doppler effect and also separately expresses the near and far fields. A small cube model is used to verify the method. Computed acoustic field pressures around the cube are compared with the boundary element method, and the numerical results show good agreement. Finally, the pressure fluctuation on a ship stern model is calculated.
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