Study for Damage Stability Operation on Floating Offshore Wind Turbines in the Revised IEC Standard

T. Chujo, K. Haneda, Yusuke Komoriyama, T. Fujiwara, K. Kokubun, Yasuhira Yamada, H. Ochi, S. Inoue
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Abstract

The development of FOWTs (Floating Offshore Wind Turbines) is going into the commercial stage from the demonstration one. One of the key issues for success in the commercial stage is how to reduce the construction cost. For example, watertight bulkheads in narrow space of FOWTs become obstacles to the cost reduction from the perspective of structural complexity and manufacturing. On the other hand, new IEC TS 61400-3-2 standard describes the unnecessity of the damage stability requirement under certain conditions. To secure the sufficient safety without the damage stability requirement according to the IEC TS 61400-3-2, an examination method with a probability theory and the FEM analysis is proposed in this paper. The probability of collision with cruising ships, P1, around a FOWT is estimated to use by the AIS data, and the probability of structural total loss, P2, due to the ship collision is indicated according to the total loss curve which is delivered from the FEM collision analysis. The joint probability which is represented by the product of P1 and P2 is compared to the target damage probability, 10 per year. The detailed information about this method and the results of trial analyses for the FOWT off the coast of Nagasaki Prefecture are also introduced in this paper.
修订IEC标准中浮式海上风力发电机损伤稳定性运行的研究
浮式海上风力发电机的发展正从示范阶段进入商用阶段。在商业阶段成功的关键问题之一是如何降低建设成本。例如,从结构复杂性和制造的角度来看,窄空间的水密舱壁成为降低成本的障碍。另一方面,新的IEC TS 61400-3-2标准描述了在某些条件下损坏稳定性要求的必要性。根据IEC TS 61400-3-2的要求,提出了一种采用概率论和有限元分析相结合的检测方法。利用AIS数据估计出FOWT周围与巡航船舶碰撞的概率P1,并根据有限元碰撞分析得到的总损失曲线表示船舶碰撞造成结构总损失的概率P2。用P1和P2的乘积表示的联合概率与目标损伤概率10 /年进行比较。本文还介绍了该方法的详细情况和长崎县外海fot试验分析的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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