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Dynamic Characteristics of Wind Turbine for Various Scenarios Considering Wind and Seismic Loads with the Baseline Control System Working

机译:考虑风和地震荷载与基线控制系统的各种场景动态特性

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In seismically active regions, more large scale wind turbines are installed. These turbines must consider loads induced by base shaking from an earthquake when calculating extreme loads. The objective of this paper is to study the dynamic characteristics of wind turbine considering wind and seismic loads while the turbine is operating. The 5 MW NREL utility scale reference turbine model is used. Different important scenarios are simulated with various loading conditions. The influence of turbulence intensity and the fatigue loads are analyzed and compared. The results indicate that the maximum of dynamic responses and fatigue loads will increase while the combination of earthquake and operational loads is considered, the mean of dynamic responses will decrease as the increase of turbulence intensity with the baseline control system working. It is concluded that it is significant to compressively analyze the dynamic property for wind turbines constructed in seismically active regions.
机译:在地震活动区域中,安装了更多大规模的风力涡轮机。这些涡轮机必须考虑在计算极端载荷时从地震中振荡引起的负载。本文的目的是研究风力涡轮机的动态特性,考虑风和地震载荷,而涡轮机正在运行。使用5 MW NREL实用尺度参考涡轮机模型。使用各种装载条件模拟不同的重要场景。分析并比较了湍流强度和疲劳载荷的影响。结果表明,在考虑地震和操作负荷的组合时,动态响应和疲劳负荷的最大值将增加,动态响应的平均值随着基线控制系统工作的湍流强度的增加而降低。得出结论是,压缩地分析在地震活动区域中构建的风力涡轮机的动态性质是很重要的。

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