带有气缸的混合式浮动结构的水动力和振荡运动

Y. Jeong, Du-Ho Lee, Min-Su Park, Y. You
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引用次数: 1

摘要

为了研究带有圆柱体的混合浮体结构的水动力和振荡运动,对混合浮体结构进行了分析和实验研究。为了研究水动力运动,对混合模型和浮桥模型进行了水动力分析。对0°、45°和90°不同入射波进行了水动力分析,分析了升沉、俯仰和浪涌的水动力运动。此外,为了研究其振荡运动,制作了混合、锥形和浮筒三个小尺寸模型,并在静水条件下进行了试验。最后分析了振荡周期、稳定时间到稳态的振荡运动。研究结果表明,与浮桥模型相比,混合模型在波浪周期6秒内的水动力运动,尤其是浪涌运动明显减小。混合模型的振荡周期比浮桥模型长1.7倍,稳定时间比浮桥模型短0.37倍。因此,期望本研究的混合模型通过减少水动力和振荡运动,有助于提高海上浮式结构的使用性能和安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrodynamic and oscillatory motions of hybrid floating structure with cylinders
In this study, in order to investigate hydrodynamic and oscillatory motions of hybrid floating structure with cylinders, analytical and experimental studies were carried out on hybrid floating structures. In order to investigate hydrodynamic motions, hydrodynamic analyses were performed on the hybrid and pontoon models. Hydrodynamic analyses were carried out to the different incident wave of 0°, 45°, and 90° and hydrodynamic motions of heave, pitch, and surge were analyzed. Also, in order to investigate oscillatory motions, three small-scale models of hybrid, tapered, and pontoon were fabricated and tested under the still-water condition. Finally, oscillatory motions of oscillation period, stabilizing time to steady-state were analyzed. As the results of this study, it was found that the hydrodynamic motions of hybrid model, especially surge motion, were significantly reduced over the wave period 6 sec comparing with the pontoon model. Also, oscillatory motions of hybrid model were presented about 1.7 times longer oscillation period and 0.37 times shorter stabilizing time to steady-state than the pontoon model. Therefore, it was expected that the hybrid model of this study contribute to improve serviceability and safety of offshore floating structures as decreasing hydrodynamic and oscillatory motions.
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