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SEMI-ANALYTICAL SOLUTION FOR SECOND-ORDER WAVE DIFFRACTION BY A TRUNCATED CIRCULAR CYLINDER IN MONOCHROMATIC WAVES

机译:截断圆环在单峰波中的二阶波衍射的半解析解

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A complete semi-analytical solution is given for second-order diffraction of monochromatic waves by a truncated vertical circular cylinder in water of uniform finite depth. The methodology presented in detail elsewhere (Eatock Taylor & Huang 1996) is adopted to find a particular solution which exactly satisfies the governing equation, the inhomogeneous free-surface condition and the seabed condition. In order to satisfy the boundary condition on the cylinder bottom, the fluid domain around the cylinder is divided into two regions. First- and second-order velocity potentials are described separately in the two regions and matched on the interface by the pressure and normal-velocity continuity conditions. Based on the formulation, the second-order wave field in the vicinity of the cylinder and the corresponding wave forces and overturning moments on the cylinder are studied in detail. Numerical results for the double frequency forces obtained by using the present semi-analytical approach are compared with those computed with a higher-order boundary element method (Eatock Taylor & Chau 1992). As well as the exact solution, an approximate solution is also given for the second-order potential and the corresponding forces. Numerical results show that the approximate solution possesses excellent accuracy for the total second-order heave force over a wide range of conditions. When kb > 1.2 (where k, b are the incident wavenumber and the draught of the cylinder respectively), the accuracy for total second-order surge force and pitch moment is also satisfactory. These results could lead to the development of very efficient solutions and corresponding algorithms for the analysis of second-order wave diffraction by more complicated structures such as tension leg platforms. Numerical results based on the present solution show that in many cases, both the first- and the second-order-free surface elevation in the vicinity of a truncated cylinder is very close to that of a bottom-seated cylinder. For waves with larger amplitudes, the maximum free-surface elevation around a vertical cylinder predicted with the second-order theory can significantly exceed that given by linear theory. There is also a considerable difference in the location of the maximum elevation predicted by the linear and nonlinear theories. [References: 28]
机译:给出了一个完整的半解析解,用于在均等有限深度的水中通过截断的垂直圆柱对单色波进行二阶衍射。采用在别处详细介绍的方法(Eatock Taylor&Huang 1996)来找到一种特定的解决方案,该解决方案完全满足控制方程式,非均匀自由表面条件和海床条件。为了满足圆柱体底部的边界条件,圆柱体周围的流体域分为两个区域。一阶和二阶速度势分别在两个区域中描述,并且在界面上通过压力和法向连续性条件进行匹配。在此基础上,详细研究了圆柱体附近的二阶波场以及圆柱体上相应的波浪力和倾覆力矩。通过使用本半分析方法获得的双频力的数值结果与通过高阶边界元法计算得到的数值结果进行了比较(Eatock Taylor&Chau 1992)。除了精确解外,还给出了二阶电势和相应力的近似解。数值结果表明,该近似解在很宽的条件下对于总的二阶升力具有极好的精度。当kb> 1.2(其中k,b分别是入射波数和圆柱的吃水深度)时,总二阶喘振力和俯仰力矩的精度也令人满意。这些结果可能会导致开发非常有效的解决方案和相应的算法,以通过更复杂的结构(如张紧腿平台)来分析二阶波衍射。基于本解决方案的数值结果表明,在许多情况下,截顶圆柱体附近的一阶和二阶自由曲面都非常接近底座圆柱体。对于较大振幅的波,使用二阶理论预测的垂直圆柱周围的最大自由表面标高可以大大超过线性理论给出的最大自由表面标高。线性和非线性理论预测的最大海拔高度的位置也存在很大差异。 [参考:28]

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