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Experimental study on wind speeds in a complex-terrain wind farm and analysis of wake effects

机译:复杂地形风电场风速试验研究及唤醒效应分析

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In this paper, wind speed deficits have been quantified based on the field observations from the hilly Shiren wind farm in China. Two lidars have been applied to measure wind speeds in the wind farm. Two clusters of wind turbines in different layout patterns were chosen for the experiments. One cluster was the upstream-and-downstream pattern, which was used to investigate the upstream turbine's wake impact on the downstream turbine. According to the experiment, the wake width of the downstream turbine widened and the largest wind speed deficit decreased gradually in the downstream direction. Meanwhile, the wake centerlines of upstream and downstream wind turbines were subjected to the wind direction and may not be in the same line. The other cluster was the side-by-side pattern, which was to investigate how the wakes and the wake interactions develop downwind of a row of wind turbines. It has been found that huge wind speed deficits existed behind the wind turbines. The wind speeds reduced mostly from 14.4 m/s to 8.0 m/s in the downwind direction and from 12.4 m/s to 4.2 m/s in the crosswind direction. Wind speeds were not stable in the far-wake zone. The wake boundary was not easy to determine as well. When wakes of two adjacent turbines encountering, the interaction effect became complicated. In these experiments, the complex terrain is one of the most important factors that complicates the wake distribution. Therefore, the influence of the terrain shape on wake distribution should be continuously investigated in the future.
机译:在本文中,基于中国丘陵地板风电场的现场观测量化了风速缺陷。已经应用了两个楣来测量风电场的风速。选择两个不同布局模式的风力涡轮机的簇被选择用于实验。一个群集是上游和下游模式,用于研究上游涡轮机对下游涡轮机的延续冲击。根据实验,下游涡轮机的唤醒宽度加宽,并且在下游方向上逐渐降低了最大的风速缺陷。同时,对上游和下游风力涡轮机的唤醒中心线路受到风向,可能不在同一条线上。另一个群集是并排模式,这是调查唤醒和唤醒交互如何发展风力涡轮机排水。已经发现风力涡轮机背后存在巨大的风速缺陷。风速大部分从下行方向上的14.4m / s至8.0 m / s减小,并且在交叉风方向上为12.4m / s至4.2m / s。风速在远唤醒区不稳定。唤醒边界也不容易确定。当遇到两个相邻的涡轮机时,相互作用效果变得复杂。在这些实验中,复杂的地形是最重要的因素之一,使唤醒分配复杂化。因此,将来应不断调查地形形状对唤醒分配的影响。

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