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Energy reduction in clustered wind farms: The case of two neighboring wind farms in Egypt

机译:集群式风电场的能源减少:以埃及两个相邻风电场为例

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Planning of wind power installations in large areas with good wind potential mostly necessitates clustering wind farms of comparable capacities in parcels nearby each others. The present work applies a methodology based on simple momentum theory to estimate the energy yield of a single wind turbine, wind farm and clustered farms in such areas. The effect of up-wind farms on farms down-wind is investigated using the Wind Atlas Analysis and Application Program (WAsP) for two real projects separated by about 2.5 km in Zafarana area on Red Sea coast. The site terrain characteristics, meteorological data, turbine specifications and turbines spatial distribution are used to estimate the area's wind climatology, turbine's energy yield and the change in different operational parameters such as the thrust coefficient, capacity factor, wake losses and plant utilization time. The results; confirmed by the real production data, showed that the energy yield is not only affected by the wind turbines within the site, but also by neighboring wind farms, specially clustered ahead in the prevailing wind direction. Also, it highlights the importance of proper planning of land allocations for wind farms in large area to avoid penalizing existing projects by new ones.
机译:在风能潜力大的大面积规划风能设备,最重要的是必须将容量相当的风电场聚集在彼此附近的地块中。本工作采用基于简单动量理论的方法来估算此类地区的单个风力涡轮机,风力发电场和集群发电场的能源产量。使用风图集分析和应用程序(WAsP),对红海沿岸Zafarana地区相距约2.5公里的两个真实项目,研究了上风场对下风场的影响。现场地形特征,气象数据,涡轮机规格和涡轮机空间分布可用于估算该地区的风气候,涡轮机的能量产量以及不同运行参数(例如推力系数,容量系数,尾流损失和电厂利用时间)的变化。结果;实际生产数据证实,能源产量不仅受到场地内风力涡轮机的影响,而且还受到邻近风电场的影响,特别是在主要风向前方聚集。此外,它还强调了正确规划大面积风电场的土地分配的重要性,以避免对现有项目进行新的处罚。

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