一组在波浪中漂浮的截顶复合材料圆柱体水动力相互作用系数的数值研究

Mir Tareque Ali
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引用次数: 0

摘要

当一组物体在波浪中紧密漂浮时,由于邻近物体的存在,这些物体上的流体载荷会受到影响。由于周围浮体的存在所产生的遮蔽或波反射效应,这些体上的波载荷受到影响,而附近浮体运动所产生的辐射波则施加额外的载荷。对于多浮体系统,精确计算水动力相互作用系数是很重要的,因为这些参数将在以后用于求解6xN联立方程来预测运动响应(其中N是多体系统中自由浮动体的数量)。另一方面,孤立浮体的水动力相互作用系数不存在。本文研究了一组自由漂浮在彼此附近的三维物体的水动力相互作用系数。由于水动力相互作用的性质相当复杂,通常建议使用数值精确的格式来研究这种复杂的现象。本文采用基于线性三维位势理论的三维源分布方法编制了计算机程序,并与已发表的多体水动力相互作用系数计算结果进行了比较,验证了程序的有效性。计算结果与已发表的结果吻合较好。进一步对一组相同的截短复合材料圆柱在规则波中近距离垂直漂浮进行了数值模拟。该多体模型在计算不同组的水动力相互作用系数时,组内成员数和组间间隙宽度是不同的。本文还研究了浮体间隙中水动力共振的发生,以及相互作用系数对角线项和耦合项结果中出现的快速波动的尖峰。最后,在分析的基础上得出了一些结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Numerical Investigation on Hydrodynamic Interaction Coefficients for a Group of Truncated Composite Cylinders Floating in Waves
When a group of bodies are floating closely in waves, the fluid loading on these bodies will be influenced due to the presence of the neighboring bodies. The wave loading on each of these bodies are affected, because of the sheltering or wave-reflection effects due to the presence of surrounding floating bodies, while additional loads are exerted by the radiated waves produced by the motions of the nearby floating bodies. For a multiple floating body system, it is important to precisely compute the hydrodynamic interaction coefficients, since these parameters will be used later to solve the 6xN simultaneous equations to predict the motion responses (where N is the number of freely floating bodies in the multi-body system). On the other hand, the hydrodynamic interaction coefficients are absent for an isolated floating body case. This paper investigates the hydrodynamic interaction coefficients for a group of three dimensional (3-D) bodies floating freely in each other’s vicinity. Since the nature of hydrodynamic interaction is rather complex, it is usually recommended to study this complicated phenomenon using numerically accurate scheme. A computer code developed using 3-D source distribution method which is based on linear three-dimensional potential theory is used and the validation of the computer code has been justified by comparing the present results with that of the published ones for the hydrodynamic interaction coefficients of multiple bodies. The agreement between the calculated results with those of the published ones is quite satisfactory. Numerical simulations are further conducted for a group of identical truncated composite circular cylinders floating vertically at close proximity in regular waves. During the computations of hydrodynamic interaction coefficients of this multi-body model for different groups, the number of members in the group as well as the gap width among them has been varied. The paper also examines the occurrence of hydrodynamic resonances in the gap among the floating bodies and the presence of spikes with rapid fluctuation in the results of the diagonal and coupling terms for interaction coefficients. Finally, some conclusions are drawn on the basis of the present analysis.
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