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DYNAMIC RESPONSE OF A LARGE-DIAMETER MONOPILE CONSIDERING 35-HOUR STORM CONDITIONS

机译:考虑35小时暴风雨条件的大直径单桨的动力响应

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As a part of the assessment of foundation resistance for monopiles, several offshore wind standards prescribe symmetric 35-hour (or 42-hour) storm sequences in terms of wind speed and significant wave height. The temporal evolution of the peak period is not specified explicitly in the standards, despite the fact that large monopile wind turbines are sensitive to the wave period. In the present work, the storm sequences according to the standards are first compared to hindcast data for intermediate water depth locations in the North Sea. An alternative storm sequence is proposed based on the hindcast data, and possible values of the peak period evolution are proposed for the standard models. The responses of a 10 MW monopile wind turbine are then computed for both the standard and proposed sequences using a time domain aero-hydro-servo-elastic code coupled to a macro element model for the soil-structure interaction. The resulting mudline load cycles are then compared for the different storm sequences.
机译:作为评估单桩基础抗力的一部分,一些海上风电标准就风速和明显的波高规定了对称的35小时(或42小时)暴风雨顺序。尽管大型单桩风力涡轮机对波浪周期很敏感,但标准中并未明确规定高峰期的时间演变。在当前工作中,首先将根据标准的暴风序列与北海中间水深位置的后预报数据进行比较。根据后播数据,提出了另一种风暴序列,并为标准模型提出了峰值周期演化的可能值。然后,使用时域空气-水-伺服-弹性代码耦合到用于土壤-结构相互作用的宏单元模型,针对标准序列和建议序列计算10兆瓦单桩风力涡轮机的响应。然后,针对不同的暴风雨顺序对产生的泥线荷载循环进行比较。

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