A Systematic Study on Fatigue Loads of Offshore Wind Turbines on Monopiles Foundation

Lihua Peng, Chao Wang, Shengkai Niu
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Abstract

Fatigue failure is one of the most common damage types of monopiles, which are widely used in offshore wind turbines (OWT). In this paper, a systematic study is performed to investigate the influence of stiffness matrix, sea states and wave directions on fatigue loads of monopiles. The stiffness matrix of the monopile determines natural frequency of the whole system and has great effect on fatigue loads. The influence of the pile diameter and length on the stiffness matrix are analyzed, which are calculated based on p-y curve of foundation. Then, three methods for selected sea states are compared. The dynamic response of the monopile using the different selection method under same wind condition are calculated and their contribution to the fatigue load is discussed. Finally, bending moment on the top of monopiles in vary wave direction are analyzed which shows significant on the fatigue. Several suggestions for design of monopile are given to avoid fatigue failure based on this study.
海上风力发电机组单桩基础疲劳载荷系统研究
疲劳破坏是单桩最常见的破坏形式之一,在海上风力发电机组中得到广泛应用。本文系统地研究了刚度矩阵、海况和波浪方向对单桩疲劳载荷的影响。单桩的刚度矩阵决定了整个系统的固有频率,对疲劳载荷有很大的影响。分析了桩径和桩长对刚度矩阵的影响,并根据基础的p-y曲线计算了桩径和桩长对刚度矩阵的影响。然后,对所选海况的三种方法进行了比较。计算了相同风力条件下不同选择方法下单桩的动力响应,并讨论了它们对疲劳荷载的贡献。最后,分析了不同波形方向下单桩顶部弯矩对疲劳的影响。在此基础上,对单桩的设计提出了避免疲劳破坏的建议。
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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