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Wake interaction and power production of variable height model wind farms

机译:可变高度模型风电场的唤醒相互作用和发电量

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摘要

Understanding wake dynamics is an ongoing research topic in wind energy, since wakes have considerable effects on the power production when wind turbines are placed in a wind farm. Wind tunnel experiments have been conducted to study the wake to wake interaction in a model wind farm in tandem with measurements of the extracted power. The aim is to investigate how alternating mast height influences the interaction of the wakes and the power production. Via the use of stereo-particle image velocimetry, the flow field was obtained in the first and last rows of the wind turbine array as a basis of comparison. It was found that downstream of the exit row wind turbine, the power was increased by 25% in the case of a staggered height configuration. This is partly due to the fact that the taller turbines reach into a flow area with a softened velocity gradient. Another aspect is that the wake downstream of a tall wind turbine to some extent passes above the standard height wind turbine. Overall the experiments show that the velocity field downstream of the exit row changes considerably when the mast height is alternating.
机译:了解尾流动力学是风能领域一项持续不断的研究课题,因为当将风力涡轮机放置在风电场中时,尾流会对发电产生很大影响。已经进行了风洞实验,以研究模型风电场中尾流与尾流之间的相互作用,并测量提取的功率。目的是研究交替的桅杆高度如何影响尾流和动力产生的相互作用。通过使用立体粒子图像测速技术,在风轮机阵列的第一行和最后一行中获得了流场作为比较的基础。发现在排出口风力涡轮机的下游,在交错的高度配置的情况下,功率增加了25%。这部分是由于较高的涡轮机以较弱的速度梯度到达流动区域这一事实。另一方面是高风轮机下游的尾流在一定程度上超过了标准高度风轮机。总体而言,实验表明,当门架高度交替变化时,出口排下游的速度场会发生很大变化。

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