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Investigation of Wake Effects on the Energy Production of Small Wind Turbines

机译:尾流对小型风力发电机发电的影响研究

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This paper examines the impact of natural and man-made obstructions on local wind conditions and the performance of small wind turbines when impacted by wake effects. The rural site used for this research contains three Skystream 3.7 turbines in close proximity to each other and several buildings. A 13 m meteorological tower with wind speed and direction sensors was installed in a nearby open area. An empirical analysis was conducted to provide a comparison of turbine performance and measured wind speed for each turbine as a function of localized disturbances caused by turbine placement. Turbine proximity to nearby buildings was observed to cause an overall reduction in power production, although cases of apparent wind speed-up induced by the buildings, and increased relative power output, were also observed. A reduction in wind turbine power output due to the wake of an adjacent turbine was observed. Overall, the turbine closest to the buildings produced about 10% less energy during the measurement period than the most distant turbine. This study confirmed the importance of careful micrositing of small wind turbines, and the complexity of the flow field near buildings and wind turbines.
机译:本文研究了自然障碍物和人为障碍物对当地风况的影响,以及受尾流影响时小型风力发电机的性能。用于该研究的农村站点包含三台彼此靠近的Skystream 3.7涡轮机和几栋建筑物。一个13 m的气象塔装有风速和方向传感器,安装在附近的开放区域。进行了一项经验分析,以比较涡轮机性能和每个涡轮机测得的风速,作为由涡轮机放置引起的局部干扰的函数。尽管还观察到了涡轮机靠近附近建筑物的情况,但导致发电量整体下降,但也观察到了建筑物引起的明显风速增加和相对功率输出增加的情况。观察到由于相邻涡轮机的唤醒而导致的风力涡轮机功率输出的减少。总体而言,最靠近建筑物的涡轮机在测量期间的能耗比最远的涡轮机低约10%。这项研究证实了对小型风力涡轮机进行细微定位的重要性,以及建筑物和风力涡轮机附近流场的复杂性。

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