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Variations in offshore wind turbine wake profiles with different inflow conditions of non-wake-affected upstream wind

机译:海上风电尾流剖面随未受尾流影响的上游风的不同流入条件的变化

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摘要

The wind energy industry has recently started to look in more depth at wind turbine wakes. Studies of wake behaviour have been carried out by analysing data measured from within this turbulent wind flow downstream of a turbine. As part of The Carbon Trust’s Offshore Wind Accelerator (OWA) offshore wakes campaign, four nacelle mounted LiDARs were deployed on two neighbouring wind turbines located at the edge of an offshore wind farm in Denmark. The LiDARs were paired in a forward and backward facing configuration on each nacelle. This particular layout for the LiDARs allowed wind conditions to be recorded for each wind turbine at several distances from them from both upstream and downstream directions. Many variations of inflow wind conditions coming onto the turbines at hub height were captured by the forward facing LiDARs and the respectively different wake profiles were recorded by the aft LiDARs. Analysis was carried out on the LiDAR data for each wind turbine for the case when the upstream wind direction was from the free stream sector, that is, the sector relative to the turbine in which upstream wind was outside the wake of any other turbine in the farm. Different wind deficit profiles were characterised for the different inflow conditions such as wind speed and turbulence intensity, and any relationships between them were reported.
机译:最近,风能行业开始更深入地研究风机尾流。通过分析从涡轮机下游湍流中测得的数据,进行了尾流特性研究。作为碳信托基金会(Carbon Trust)的海上风能加速器(OWA)海上唤醒活动的一部分,在位于丹麦海上风电场边缘的两个相邻风力涡轮机上部署了四个安装在机舱上的LiDAR。 LiDAR在每个机舱上以向前和向后的配置进行配对。 LiDAR的这种特殊布局允许记录每个风力涡轮机的风况,从上游和下游方向到它们的几个距离。面向前方的LiDAR捕获了轮毂高度处进入涡轮机的入风状况的多种变化,而后部的LiDAR分别记录了不同的尾流剖面。针对上游风向来自自由流扇区的情况,针对每个风力涡轮机的LiDAR数据进行了分析,即上游风向相对于其中上游风位于其他风轮机尾流之外的风轮机的扇区。农场。针对不同的入流条件(例如风速和湍流强度)对不同的风亏量曲线进行了表征,并报告了它们之间的任何关系。

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