Wave Influences on Viscous Flow around a Ship in Steady Yaw Motion
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概要
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This paper concerns an investigation of wave influences on viscous flow around a ship in steady yaw motion, which is based on detailed analysis of numerical solutions of Reynolds-averaged Navier-stokes (RaNS) equations. The present numerical method solves the unsteady RaNS and continuity equations for mean-velocity and pressure and wave fields with exact nonlinear kinematic and approximate dynamic free-surface boundary conditions. In the following, an overview is given of the present numerical approach, and results are presented for the Series 60 C_B=0.6 at yaw angle 10° for with/without-wave cases, including wherever possible comparison with experimental data. Then discussions are focused on identification of salient feature of wave-included effects on the mean-velocity and pressure fields, body surface pressure and frictional streamlines, and hydrodynamic forces acting on the hull. Lastly, some specific aspects of flow for wave breaking and wave-induced vortices are described.
- 社団法人日本船舶海洋工学会の論文
著者
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Tahara Yusuke
Dept. Marine System Eng. Osaka Prefecture University
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Tahara Yusuke
Dept.marine System Eng. Osaka Prefecture University
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田原 裕介
Dept.Marine System Eng.,Osaka Prefecture University
関連論文
- Application of Isotropic and Anisotropic Turbulence Models to Ship Flow Computation
- Evaluation of a RaNS Equation Method for Calculating Ship Boundary Layers and Wakes Including Wave Effects
- Wave Influences on Viscous Flow around a Ship in Steady Yaw Motion