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Investigation of terrain and wake effects on the performance of wind farms in complex terrain using numerical and experimental data

机译:使用数值和实验数据研究地形和尾流对复杂地形中风电场性能的影响

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In this work, the combination effects on wind turbine performances of wakes and terrain-driven flow are investigated. The test case is a subcluster of four turbines from a wind farm sited in southern Italy in a very complex terrain. The layout, the inter-turbine distance and the wind rose result in a challenging performance scenery. The subcluster is analyzed, when the wind blows from the west, through computational fluid dynamics numerical simulations and experimental supervisory control and data acquisition data mining. Two wind intensity regimes and several simulation setups are employed. It is shown that the main effect of the terrain is the northward distortion of the wake of the upstream turbine. This explains the non-trivial yawing patterns of the cluster and the fact that the wake line affects the overall performances of the subcluster less than it would do in flat terrain. It is further shown that the presence of the rest of the subcluster in operation southward deviates the wake line of the upstream turbine. The dependency on wind intensity of these directional distortions allows to estimate the relative importance of wakes and terrain-driven flow. A bijective feedback between models and data is established and a convincing framework is constructed, for separating and assessing the effect of the terrain and of the single and multiple wake. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:在这项工作中,研究了尾流和地形驱动流对风力发电机性能的综合影响。该测试案例是来自意大利南部风电场的四个涡轮机的子群集,该风力涡轮机的地形非常复杂。布局,涡轮之间的距离和风的上升导致了具有挑战性的表演风景。当风从西方吹来时,通过计算流体动力学数值模拟和实验监督控制以及数据采集数据挖掘来分析子集群。采用了两种风强度方案和几种模拟设置。结果表明,地形的主要影响是上游涡轮的尾流向北变形。这就解释了集群的平凡偏航模式,以及尾迹线对子集群整体性能的影响比在平坦地形中的影响要小。进一步显示,向南运行的子集群的其余部分的存在会偏离上游涡轮的尾流线。这些方向性变形对风强度的依赖性允许估算尾流和地形驱动流的相对重要性。建立了模型和数据之间的双向反馈,并构造了令人信服的框架,用于分离和评估地形以及单次和多次尾迹的影响。版权所有(c)2017 John Wiley&Sons,Ltd.

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