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Wind spectral characteristics on strength design of floating offshore wind turbines

机译:海上浮式风力发电机强度设计中的风谱特性

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Characteristics of a turbulence wind model control the magnitude and frequency distribution of wind loading on floating offshore wind turbines (FOWTs), and an in-depth understanding of how wind spectral characteristics affect the responses, and ultimately the design cost of system components, is in shortage in the offshore wind industry. Wind spectrum models as well as turbulence intensity curves recommended by the International Electrotechnical Commission (IEC) have characteristics derived from land-based sites, and have been widely adopted in offshore wind projects (in the absence of site-specific offshore data) without sufficient assessment of design implications. In this paper, effects of wind spectra and turbulence intensities on the strength or extreme responses of a 5 MW floating offshore wind turbine are investigated. The impact of different wind spectral parameters on the extreme blade loads, nacelle accelerations, towertop motions, towerbase loads, platform motions and accelerations, and mooring line tensions are presented and discussed. Results highlight the need to consider the appropriateness of a wind spectral model implemented in the strength design of FOWT structures.
机译:湍流风模型的特征控制着浮动海上风力涡轮机(FOWT)上风载荷的大小和频率分布,并且深入了解风谱特性如何影响响​​应,最终影响系统组件的设计成本。海上风电行业的短缺。国际电工委员会(IEC)推荐的风谱模型和湍流强度曲线具有陆上站点的特征,并且在没有充分评估的情况下已广泛用于海上风电项目(缺少特定站点的海上数据)设计意义。本文研究了风谱和湍流强度对5兆瓦海上浮式风力发电机的强度或极端响应的影响。提出并讨论了不同风谱参数对极端叶片载荷,机舱加速度,塔顶运动,塔基载荷,平台运动和加速度以及系泊缆线张力的影响。结果强调需要考虑在FOWT结构的强度设计中实施的风谱模型是否合适。

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