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A comprehensive fatigue load set reduction study for offshore wind turbines with jacket substructures

机译:带有夹套子结构的海上风力发电机组的疲劳负荷降低综合研究

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摘要

Designing jacket substructures for offshore wind turbines demands numerous time domain simulations to face different combinations of wind, wave, and current states. Regarding sophisticated design methods incorporating structural optimization algorithms, a load set reduction is highly desirable. To obtain knowledge about the required size of the design load set, a study on fatigue limit state load sets is conducted, which addresses mainly two aspects. The first one is a statistical evaluation of random subsets derived from probabilistic load sets with realistic environmental data obtained from the research platform FINO3. A full set comprising 2048 load simulations is gradually reduced to subsets and the results are compared to each other. The second aspect is a systematic load set reduction with the assumption of unidirectional wind, waves, and current. Firstly, critical directions are determined. Then, unidirectional load sets are systematically reduced. The corresponding damages are compared to those obtained from probabilistic load sets for eight test structures. It is shown that the omission of wind-, wave-, and current-misalignment does not necessarily imply an excessive simplification, if considered wisely. The outcome of this study can be used to decrease the numerical effort of the jacket design process and the levelized costs of energy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:设计用于海上风力涡轮机的护套子结构需要大量时域仿真,以面对风,浪和当前状态的不同组合。关于结合结构优化算法的复杂设计方法,非常需要减小载荷集。为了获得有关设计载荷集所需大小的知识,对疲劳极限状态载荷集进行了研究,主要研究了两个方面。第一个是对随机载荷子集的统计评估,该随机子集具有从研究平台FINO3获得的真实环境数据。包含2048个负载模拟的全套逐渐减少为子集,并将结果相互比较。第二个方面是在假设单向风,波浪和水流的情况下系统地减少负荷。首先,确定关键方向。然后,系统地减少单向载荷集。将相应的损坏与从八个测试结构的概率载荷集中获得的损坏进行比较。结果表明,如果明智地考虑,省略风向,波向和电流偏移并不一定意味着过度简化。这项研究的结果可用于减少夹克设计过程的数字工作量和能源的均摊成本。 (C)2017 Elsevier Ltd.保留所有权利。

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