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Scour influence on the fatigue life of operational monopile-supported offshore wind turbines

机译:冲刷对单桩支撑式海上风力发电机疲劳寿命的影响

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Offshore wind turbines supported on monopiles are an important source for renewable energy. Their fatigue life is governed by the environmental loads and in the dynamic behavior, depending on the support stiffness and thus soil-structure interaction. The effects of scour on the short-term and long-term responses of the NREL 5-MW wind turbine under operational conditions have been analyzed by using a finite element beam model with Winkler springs to model soil-structure interaction. It was found that due to scour, the modal properties of the wind turbine do not change significantly. However, the maximum bending moment in the monopile increases, leading to a significant reduction in fatigue life. Backfilling the scour hole can recover the fatigue life, depending mostly on the depth after backfilling. An approximate fatigue analysis method is proposed, based on the full time-domain analysis for 1 scour depth, predicting with good accuracy the fatigue life for different scour depths from the quasi-static changes in the bending moment.
机译:单桩支撑的海上风力发电机是可再生能源的重要来源。它们的疲劳寿命取决于环境负荷和动态行为,取决于支撑刚度以及土与结构的相互作用。通过使用带有Winkler弹簧的有限元梁模型来模拟土-结构相互作用,研究了冲刷对NREL 5兆瓦风力发电机在运行条件下短期和长期响应的影响。已经发现,由于冲刷,风力涡轮机的模态特性没有显着改变。但是,单桩中的最大弯矩增加,导致疲劳寿命显着降低。回填冲孔可以恢复疲劳寿命,这主要取决于回填后的深度。提出了一种基于1小时冲刷深度的全时域分析的近似疲劳分析方法,根据弯矩的准静态变化,准确预测了不同冲刷深度的疲劳寿命。

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