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Investigation of site-specific wind field parameters and their effect on loads of offshore wind turbines

机译:特定地点风场参数及其对海上风力发电机负荷的影响研究

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摘要

The main contributing factors to unsteady loading of Offshore Wind Turbines (OWT) are wind shear, turbulence, and waves. In the present paper, the turbulence intensity and the wind shear exponent are investigated. Using data from the FINO 1 research platform, these parameters are analyzed and compared with the proposed wind field parameters in the IEC standard 61400-3. Based on this analysis, aeroelastic simulations are performed to determine the effect of wind field parameters on the fatigue and the extreme loads on the rotor blades. For the investigations, the aeroelastic model of a 5 MW OWT is used with a focus on design load cases in an operating state (power production). The fatigue loads are examinedby means of the damage-equivalent load-range approach. In order to determine the extreme loads with a recurrence period of 50 years, a peak over threshold extrapolation method and a novel method based on average conditional exceedance ratesare used. The results show that the requirements of the IEC standard are very conservative for the design of the rotor blades. Therefore, there could be a large optimization potential for the reduction of weight and cost of the rotor blades.
机译:造成海上风轮机(OWT)不稳定载荷的主要因素是风切变,湍流和波浪。本文研究了湍流强度和风切变指数。使用来自FINO 1研究平台的数据,对这些参数进行分析,并与IEC标准61400-3中建议的风场参数进行比较。基于此分析,进行了气动弹性模拟,以确定风场参数对转子叶片的疲劳和极限载荷的影响。为了进行研究,使用了5 MW OWT的气动弹性模型,重点是在运行状态(发电)下的设计载荷工况。疲劳载荷通过等效损伤载荷范围方法进行检查。为了确定重复周期为50年的极限负载,使用了峰值超过阈值外推法和一种基于平均条件超出率的新颖方法。结果表明,IEC标准的要求对于转子叶片的设计非常保守。因此,对于减小转子叶片的重量和成本可能具有很大的优化潜力。

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