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Experimental investigation of the performance and wake effect of a small-scale wind turbine in a wind tunnel

机译:小型风轮机在风洞中的性能和尾流效应的实验研究

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The wake of upstream wind turbines is known to affect the operation of downstream turbines and the efficiency of the wind farm. In this study, a systematic experimentation on performance and wake spatial evolution was carried out using a wind turbine model varying tip speed ratio, pitch and yaw angles. The change of pitch angle was observed to induce a greater effect on the wake velocity as compared to the tip speed ratio. This is interpreted in terms of "force viewpoint", which describes more quantitatively the relationship between the turbine performance and the wake, as compared to the "power viewpoint", based on the sole energy conversion. The turbine yaw angle is observed to cause not only a decrease in power and thrust, but also an offset and an asymmetry in the wake. The offset, quantified using the spatial distribution of the velocity minima, is modeled analytically. Comparisons of model estimations with the experimental measurements show that the proposed model can acceptably predict the wake offset of a yawed turbine. The observed dependencies of the mean velocity deficit and wake turbulence on power, thrust, and yaw angle, may suggest new derating strategies for wind farm optimization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已知上游风力涡轮机的尾流会影响下游涡轮机的运行和风电场的效率。在这项研究中,使用改变叶尖速比,俯仰角和偏航角的风力涡轮机模型进行了性能和尾流空间演变的系统实验。与尖端速度比相比,观察到俯仰角的变化对尾流速度产生更大的影响。这是根据“力视点”来解释的,该力视点基于唯一的能量转换更定量地描述了与“功率视点”相比,涡轮机性能与尾流之间的关系。观察到涡轮机偏航角不仅导致功率和推力的减小,而且导致尾流的偏移和不对称。使用速度最小值的空间分布来量化的偏移量经过解析建模。模型估计与实验测量值的比较表明,所提出的模型可以可接受地预测偏航涡轮的尾流偏移。观测到的平均速度赤字和尾流对功率,推力和偏航角的依赖性可能为风电场优化提出了新的降额策略。 (C)2018 Elsevier Ltd.保留所有权利。

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