首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >HYDRODYNAMIC INTERACTIONS OF THE TRUNCATED POROUS VERTICAL CIRCULAR CYLINDER WITH WATER WAVES
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HYDRODYNAMIC INTERACTIONS OF THE TRUNCATED POROUS VERTICAL CIRCULAR CYLINDER WITH WATER WAVES

机译:截短多孔垂直圆柱与水波的流体动力相互作用

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Wave diffraction-radiation by a porous body is investigated here. Linear potential flow theory is used and the associated Boundary Value Problem (BVP) is formulated in frequency domain within a linear porosity condition. First, a semi-analytical solution for a truncated porous circular cylinder is developed using the dedicated eigenfunction expansion method. Then the general case of wave diffraction-radiation by a porous body with an arbitrary shape is discussed and solved through Boundary Integral Equation Method (BIEM). The main goal of these developments is to adapt the existing diffraction-radiation code (HYDROSTAR) for that type of applications. Thus the present study of the porous cylinder consists a validation work of (BIEM) numerical implementation. Excellent agreement between analytical and numerical results is observed. Porosity influence on wave exciting forces, added mass and damping is also investigated.
机译:这里研究了多孔体的波衍射 - 辐射。使用线性电位流动理论,并且在线孔隙率条件的频域中配制相关的边界值问题(BVP)。首先,使用专用的特征函数膨胀方法开发用于截短多孔圆柱体的半分析溶液。然后通过边界整体方程(BIEM)讨论具有任意形状的多孔体的多孔体的波衍射 - 辐射的一般情况。这些发展的主要目的是为该类型的应用调整现有的衍射辐射码(HydroStar)。因此,对多孔圆筒的本研究包括(BIEM)数值实现的验证工作。观察分析和数值结果之间的良好协议。还研究了对波励磁力的影响,增加了质量和阻尼。

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