Influence of Horizontal Maximum Wind Velocity Height of Downburst on Blade Root Load of Wind Turbine

D. Li, Xuyao Zhang, Ze Li, Qianyu Wang
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Abstract

In order to study the influence of the change of the horizontal maximum wind velocity height of downburst on the blade root load characteristics of wind turbine, a three-dimensional fluctuating wind field of downburst was constructed by using the analytical theoretical model of downburst combined with IECKAI fluctuating wind spectrum model, and the variation law of wind turbine blade root load when the horizontal maximum wind velocity height of downburst changed was calculated and analyzed. The results show that when the horizontal maximum wind velocity height of downburst changes from the bottom position to the top position of the rotor plane, it has a great influence on the edgewise bending moment of the wind turbine blade root, and the average value of the maximum value increases by 22.66% compared with the minimum value. When the horizontal maximum wind velocity height of downburst is located at the bottom of the rotor, the average value of the flapwise bending moment is the smallest. When other heights change, the impact on the flapwise bending moment of the blade root is small, and the maximum value of the average value only increases by 2.12% compared with the minimum value.
水平最大降爆风速高度对风力机叶片根部负荷的影响
为了研究下突风降水平最大风速高度变化对风力机叶片根部载荷特性的影响,采用下突风降解析理论模型结合IECKAI脉动风谱模型构建了下突风降的三维脉动风场,计算分析了下突风降水平最大风速高度变化时风力机叶片根部载荷的变化规律。结果表明:当降爆水平最大风速高度从转子平面底部位置变化到顶部位置时,对风力机叶片根部的沿向弯矩影响较大,最大值的平均值比最小值增加22.66%;当降爆水平最大风速高度位于转子底部时,其扑翼弯矩平均值最小。当其他高度变化时,对叶片根部扑动弯矩的影响较小,平均值的最大值仅比最小值增加2.12%。
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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