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Probabilistic fatigue analysis of jacket support structures for offshore wind turbines exemplified on tubular joints

机译:以管接头为例的海上风力涡轮机护套支撑结构的概率疲劳分析

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摘要

The design of offshore wind turbines is usually based on the semi-probabilistic safety concept. Using probabilistic methods, the aim is to find an advanced structural design of OWTs in order to improve safety and reduce costs. The probabilistic design is exemplified on tubular joints of a jacket substructure. Loads and resistance are considered by their respective probability distributions. Time series of loads are generated by fully-coupled numerical simulation of the offshore wind turbine. Especially the very high stress ranges that rarely occur during a period with constant conditions are decisive for the fatigue design. The peak-over-threshold method is applied to find the probability distribution of the very high stress ranges. The method of maximum-likelihood estimation is used to determine the parameters of the underlying generalized Pareto distribution. Further analysis shows that especially the number of the very high stress ranges, scattering for different time series, has a significant impact on the resulting fatigue damage.
机译:海上风力涡轮机的设计通常基于半概率安全概念。使用概率方法的目的是找到一种先进的OWT结构设计,以提高安全性并降低成本。概率设计以外套子结构的管状接头为例。负载和阻力通过它们各自的概率分布来考虑。负荷的时间序列是通过海上风力发电机的全耦合数值模拟生成的。特别是在恒定条件下很少出现的非常高的应力范围对于疲劳设计至关重要。应用阈值峰值法来找到很高应力范围的概率分布。最大似然估计方法用于确定潜在的广义帕累托分布的参数。进一步的分析表明,特别高的应力范围的数量(在不同的时间序列上散射)对产生的疲劳损伤有重大影响。

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