3. Calculation of Effective Wake Distribution of a Simple Hull Form
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概要
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A method for calculating effective wake distribution is developed for a three-dimensional hull form. In the present study the momentum integral equations of the boundary layer and wake are solved by an interactive procedure taking the interaction between propeller and ship wake into account. The velocity field with an operating propeller is divided into effective velocity field and propeller induced velocity field, and the boundary layer approximation is assumed to be applicable to the effective velocity field while the propeller induced velocity field is assumed to be inviscid. To examine the validity of the method the flow measurements were made for a simple hull from, i.e. Wigley's parabolic hull form model. It was found that the method can predict fairly well the velocity field with and without a propeller. The calculated results show also that the degree of change from the nominal wake distribution into the effective wake distribution is large in the region where the propeller induced velocity is strong and the velocity gradient of the nominal velocity field is steep.
- 社団法人日本船舶海洋工学会の論文
著者
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Nagamatsu Tetsuo
Nagasaki Experimental Tank Mitsubishi Heavy Inustries Ltd.
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Nagamatsu Tetsuo
Nagasaki Experimental Tank Mhi.
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SATO Toshihiro
Nagasaki Experimental Tank, Mitsubishi Heavy Inustries, Ltd.
関連論文
- 6. Study on the Minimization of Ship Viscous Resistance
- 1. Calculation of Viscous Pressure Resistance of Ships Based on a Higher Order Boundary Layer Theory
- 3. Calculation of Effective Wake Distribution of a Simple Hull Form
- 7. Prediction of Effective Wake Distribution for a Body of Revolution