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Observed site obstacle impacts on the energy performance of a large scale urban wind turbine using an electrical energy rose

机译:观察到的现场障碍物对使用电能上升器的大型城市风力涡轮机的能源性能的影响

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Large scale wind turbines deployed in "behind the meter" applications at medium and large scale industrial consumer sites can offset the purchase of retail electricity from the utility. However, unlike traditional onshore wind farm sites in elevated rural areas, such industrial sites tend to be at lower elevations and located in more urbanised areas with a higher likelihood of being in vicinity of manmade obstacles such as buildings. This research case study presents observed impacts of various site obstacle features, from local buildings to regional topography on the energy performance of an 850 kW rated wind turbine operating in a peri-urban area. The study is based on the analysis of 10-minute SCADA data measured over multiple years. The analysis includes a novel wind turbine electrical energy rose (EER) approach to determine the directional variation of the wind turbine electrical energy output in relation to site features around the turbine location. The paper concludes that low broad buildings with heights of only 20% of the turbine hub height can have a significant energy reducing impact compared to taller narrow buildings and that hills-8 km from the turbine site have an energy reducing impact. The outcomes of the study should be of benefit to those involved in the pre-feasibility stages of deploying single large scale wind turbines at industrial sites in peri-urban areas. (C) 2017 International Energy Initiative. Published by Elsevier Inc. All rights reserved.
机译:在中型和大型工业用电站点部署在“仪表背后”应用中的大型风力涡轮机可以抵消从公用事业公司购买零售电力的费用。但是,与农村地区高架上的传统陆上风电场不同,此类工业场所往往位于较低的海拔高度,并且位于城市化程度更高的地区,更有可能位于人为障碍物(例如建筑物)附近。该研究案例研究提供了从本地建筑物到区域地形的各种场所障碍物特征对在郊区运行的850 kW额定风力涡轮机的能源性能的影响。这项研究基于对多年来测量的10分钟SCADA数据的分析。该分析包括一种新颖的风力涡轮机电能上升(EER)方法,用于确定风力涡轮机电能输出相对于围绕涡轮机位置的站点特征的方向变化。该论文得出的结论是,与较高的狭窄建筑物相比,高度仅为涡轮机轮毂高度的20%的低矮宽广的建筑物可以具有显着的节能效果,并且距涡轮机地点8公里的山丘具有节能效果。该研究的结果应有益于那些在城市周边地区的工业场所部署单个大型风力涡轮机的预可行性阶段的参与者。 (C)2017年国际能源计划。由Elsevier Inc.出版。保留所有权利。

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