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Variability of breaking wave characteristics and impact loads on offshore wind turbines supported by monopiles

机译:单桩支撑的海上风力发电机的破碎波特性和冲击载荷的变化

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Most existing and planned offshore wind turbines (OWTs) are located in shallow water where the possibility of breaking waves impacting the structure may influence design. Breaking waves and their associated impact loads are challenging to model because the breaking process is a strongly non-linear phenomenon with significant statistical scattering. Given the challenges and uncertainty in modeling breaking waves, there is a need for comparing existing models with simultaneous environmental and structural measurements taken from utility-scale OWTs exposed to breaking waves. Overall, such measurements are lacking; however, one exception is the Offshore Wind Turbines at Exposed Sites project, which recorded sea state conditions and associated structural loads for a 2.0 MW OWT supported by a monopile and located at the Blyth wind farm off the coast of England. Measurements were recorded over a 17 month campaign between 2001 and 2003, a period that included a storm that exposed the instrumented OWT to dozens of breaking waves. This paper uses the measurements from this campaign to categorize and identify breaking waves and quantify the variability of their impact loads. For this particular site and turbine, the distribution of measured mudline moments due to breaking waves has a mean of 8.7 MN-m, a coefficient of variation of 26% and a maximum of 14.9 MN-m. The accuracy of several breaking wave limits and impact force models is compared with the measurements, and the impact force models are shown to represent the measurements with varying accuracy and to be sensitive to modeling assumptions. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:大多数现有的和计划中的海上风力涡轮机(OWT)都位于浅水区,在这里破波影响结构的可能性可能会影响设计。破碎波及其相关的冲击载荷很难建模,因为破碎过程是一种强烈的非线性现象,具有明显的统计散射。考虑到在建模海浪中所面临的挑战和不确定性,有必要将现有模型与同时暴露于海浪的公用事业规模OWT进行的环境和结构测量同时进行比较。总体而言,缺乏此类测量;但是,一个例外是“暴露地点的海上风力涡轮机”项目,该项目记录了由单体支撑并位于英格兰沿海布莱斯风电场的2.0 MW OWT的海况和相关的结构载荷。在2001年至2003年之间的17个月的活动中记录了测量结果,此期间包括一场暴风雨,使仪器化的OWT暴露在数十个碎波中。本文使用该活动的测量结果来分类和识别冲击波,并量化冲击波的变化性。对于这个特定的站点和涡轮机,由于破裂波测得的泥线矩的分布的平均值为8.7 MN-m,变异系数为26%,最大值为14.9 MN-m。将几个破碎波极限和冲击力模型的精度与测量值进行了比较,显示了冲击力模型以不同的精度表示测量结果,并且对建模假设敏感。版权所有(C)2015 John Wiley&Sons,Ltd.

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