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An experimental analysis of wind and power fluctuations through time-resolved data of full scale wind turbines

机译:通过全尺寸风力涡轮机的时间分辨数据对风和功率波动进行实验分析

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Addressing short-term wind and wind turbine power fluctuations is fundamental in order to understand the nature of turbulence and of the mechanical loads to which wind turbines are subjected. This work is an experimental study of wind and power fluctuations at on onshore wind farm in Italy. Four wind turbines having 2 MW of rated power each are studied through time-resolved data. The sampling frequency is of the order of the Hz. This wind farm has been selected because there are two orders of magnitude of inter-turbine distance (3 and 7 rotor diameters) and therefore it is possible to study different levels of wake interactions recovery. The power curve at short time scales is studied and the inertia of the wind turbines, with respect to the wind fluctuations, is observed in the form of hysteresis of the power curve. Subsequently, the distribution of the wind and power variations is studied on several time scales and different features of the distributions are observed for downstream wind turbines with respect to upstream ones. The two-point statistics of power and wind-power is shown to be responsive to the wake regime to which wind turbines are subjected. This can suggest new approaches for wake control strategies.
机译:为了理解湍流的性质以及风力涡轮机所承受的机械负载,解决短期风力和风力涡轮机功率波动是至关重要的。这项工作是对意大利陆上风电场风能和电力波动的实验研究。通过时间解析数据研究了四台具有2 MW额定功率的风力涡轮机。采样频率约为Hz。选择该风电场的原因是涡轮机之间的距离有两个数量级(转子直径为3和7),因此有可能研究不同水平的尾流相互作用恢复。研究了短时间尺度上的功率曲线,并以功率曲线滞后的形式观察了风力涡轮机相对于风的波动的惯性。随后,在几个时间尺度上研究了风和功率变化的分布,并观察了下游风力发电机相对于上游风力发电机的分布的不同特征。功率和风能的两点统计数据显示出对风力涡轮机所经受的唤醒状态的响应。这可以为唤醒控制策略提出新的方法。

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