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Experimental and numerical investigation on hydrodynamic response of buoy form spar under regular waves

机译:规则波浪作用下浮标形翼梁水动力响应的实验和数值研究

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Spar platforms are used for drilling, production, storage and offloading of oil in deep water. Spar with its deep draft and large inertia experience low heave and pitch motions in operating conditions. However, the heave motions can be large when encountered by long-period swells or near resonant period. The heave motion of the Spar platforms can be reduced by decreasing the water plane area, increasing the draft, the added mass and/or damping. Various alternatives to reduce the heave motion in long-period swells have been in the fore front of research for the last two decades. An alternate hull form of a shape similar to a buoy with deep draft has been proposed in this study. The buoy form Spar is a cylindrical floating vessel with curved surface near the water plane. The present study focus on the efficiency of the buoy form Spar in reducing the heave motion and increasing the heave natural period. A classic Spar of 31 m diameter and deep draft buoy form Spars with 25 and 20 m diameter at the water plane area has been considered. The moon pool diameter of 12.5 m and the displacement of 63,205 tonnes are maintained for all Spars. The experimental investigations are conducted using 1:100 scale models in the wave flume. The natural period and the damping ratio for the heave and pitch motions were obtained by conducting free decay tests. Numerical simulations have been carried out using panel method. Based on the study, it is concluded that the reduction in water plane area is effective in reducing the hydrodynamic response of the buoy form Spar and increase in the heave natural period is noted.
机译:Spar平台用于深水中石油的钻探,生产,存储和卸载。具有较高吃水深度和较大惯性的翼梁在工作条件下会经历低沉和俯仰运动。但是,当遇到长时间的隆起或接近共振周期时,升沉运动可能会很大。可以通过减小水平面面积,增加吃水深度,增加质量和/或减少阻尼来减少Spar平台的升沉运动。在过去的二十年中,减少长期膨胀中的升沉运动的各种替代方案一直是研究的前沿。这项研究提出了一种形状类似于浮标且深吃水的船体形式。 Spar型浮标是一个圆柱形的浮船,在水面附近有弯曲的表面。目前的研究集中在浮子形式的晶石在减少升沉运动和增加升沉自然周期的效率。已经考虑过一个直径为31 m的经典晶石和深水浮标形式的稀疏,在水平面区域的直径为25和20 m。所有Spars的月池直径为12.5 m,排水量为63,205吨。在波浪槽中使用1:100比例模型进行实验研究。升沉和俯仰运动的自然周期和阻尼比通过进行自由衰减试验获得。使用面板法进行了数值模拟。根据研究,得出的结论是,减小水平面面积可有效减少Spar型浮标的水动力响应,并注意到升沉自然周期的增加。

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