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Multi-MW wind turbine power curve measurements using remote sensing instruments – the first Høvsøre campaign

机译:使用遥感仪器进行的多兆瓦风力发电机功率曲线测量 - 第一次Høvsøre运动

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摘要

Power curve measurement for large wind turbines requires taking into account more parameters than only the wind speed at hub height. Based on results from aerodynamic simulations, an equivalent wind speed taking the wind shear into account was defined and found to reduce the scatter in the power curve significantly. Two LiDARs and a SoDAR are used to measure the wind profile in front of a wind turbine. These profiles are used to calculate the equivalent wind speed. LiDAR are found to be more accurate than SoDAR and therefore more suitable for power performance measurement. The equivalent wind speed calculated from LiDAR profile measurements gave a small reduction of the power curve uncertainty. Several factors can explain why this difference is smaller than expected, including the experimental design and errors pertaining to the LiDAR at that time. This first measurement campaign shows that used of the equivalent wind speed at least results in a power curve with no more scatter than using the conventional method.
机译:大型风力发电机的功率曲线测量需要考虑更多的参数,而不仅仅是轮毂高度处的风速。根据空气动力学模拟的结果,定义了考虑风切变的等效风速,发现该风速显着降低了功率曲线中的散射。两个LiDAR和一个SoDAR用于测量风力涡轮机前面的风廓线。这些配置文件用于计算等效风速。发现LiDAR比SoDAR更准确,因此更适合功率性能测量。根据LiDAR轮廓测量结果计算出的等效风速会稍微降低功率曲线的不确定性。有几个因素可以解释为什么这种差异小于预期,包括当时的实验设计和与LiDAR有关的误差。第一个测量活动表明,使用等效风速至少会导致功率曲线不比使用常规方法散布得多。

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