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Offshore Coastal Wind Speed Gradients: issues for the design and development of large offshore windfarms

机译:离岸沿海风速梯度:大型离岸风电场的设计和开发问题

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Simulations, from mesoscale numerical models, and analyses of in-situ and remote sensing data from offshore wind farms in Denmark, are used to examine both horizontal and vertical gradients of wind speeds in the coastal zone. Results suggest that the distance from the coastline over which wind speed vertical profiles are not at equilibrium with the sea surface (which defines the coastal zone) extends to 20 km and possibly 70 km from the coast. Using this operational definition of the coastal zone, these results thus imply the typical width of the coastal zone in northern Europe is between 20 and 70 km. The width of the coastal zone, and the wind's vertical (shear) and horizontal gradients within the coastal zone, depend on atmospheric stability. Although vertical wind speed profiles above 50 m are likely responding to additional factors such as the height of the boundary-layer, using a stability correction improves predictions of wind speed compared with the logarithmic profile. Modelling indicates that within the coastal zone, wind speeds at typical turbine hub-heights can change by 2 m/s over the horizontal extent of a large wind farm, depending on stability. However, if the fetch is sufficiently long (or the windfarm is further from the coast) both horizontal and vertical wind speed gradients over the area of the wind farm appear to be small and negligible.
机译:来自中尺度数值模型的模拟,以及来自丹麦海上风电场的原位和遥感数据的分析,被用于检查沿海地区风速的水平和垂直梯度。结果表明,距风速垂直剖面与海面(定义沿海区域)不平衡的海岸线的距离延伸到距海岸20公里,甚至70公里。使用沿海地区的这种操作定义,这些结果因此意味着北欧沿海地区的典型宽度在20到70公里之间。沿海地区的宽度以及沿海地区内风的垂直(剪切)和水平梯度取决于大气的稳定性。尽管高于50 m的垂直风速剖面可能会响应其他因素(例如边界层的高度),但与对数剖面相比,使用稳定性校正可以改善对风速的预测。模型表明,在沿海地区,典型的涡轮机轮毂高度的风速在大型风电场的水平范围内可以变化2 m / s,具体取决于稳定性。但是,如果获取时间足够长(或者风电场距离海岸较远),则风电场区域上的水平和垂直风速梯度都将很小且可以忽略不计。

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