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The impact of turbulence intensity and atmospheric stability on power deficits due to wind turbine wakes at Horns Rev wind farm

机译:湍流强度和大气稳定性对风力涡轮机引起的功率不足的影响在Horns Rev风力发电场中被唤醒

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摘要

The wind turbine operational characteristics, power measurements and meteorological measurements from Horns Rev offshore wind farm have been identified, synchronized, quality screened and stored in a common database as 10 min statistical data. A number of flow cases have been identified to describe the flow inside the wind farm, and the power deficits along rows of wind turbines have been determined for different inflow directions and wind speed intervals. A method to classify the atmospheric stability based on the Bulk-Ri number has been implemented. Long-term stability conditions have been established, which confirms, in line with previous results, that conditions tend towards near neutral as wind speeds increase but that both stable and unstable conditions are present at wind speeds up to 15 m s1. Moreover, there is a strong stability directional dependence with southerly winds having fewer unstable conditions, whereas northerly winds have fewer observations in the stable classes. Stable conditions also tend to be associated with lower levels of turbulence intensity, and this relationship persists as wind speeds increase. Power deficit is a function of ambient turbulence intensity. The level of power deficit is strongly dependent on the wind turbine spacing; as turbulence intensity increases, the power deficit decreases. The power deficit is determined for four different wind turbine spacing distances and for stability classified as very stable, stable and others (near neutral to very unstable). The more stable the conditions are, the larger the power deficit.
机译:Horns Rev海上风电场的风力发电机运行特性,功率测量和气象测量已被识别,同步,质量筛选并作为10分钟统计数据存储在一个公共数据库中。已经确定了许多流动情况来描述风电场内部的流动,并且针对不同的流入方向和风速间隔确定了沿着风力发电机行的功率损耗。已经实现了基于Bulk-Ri数对大气稳定性进行分类的方法。已经建立了长期的稳定条件,与先前的结果一致,这证实了随着风速的增加,这些条件趋向于接近中性,但是在风速高达15 m s1时,同时存在稳定和不稳定的条件。而且,在不稳定条件下,南风对稳定方向的依赖性强,而在稳定类别中,北风的观测较少。稳定的条件也往往与较低的湍流强度有关,并且这种关系随着风速的增加而持续存在。功率不足是环境湍流强度的函数。功率不足的水平在很大程度上取决于风力涡轮机的间距。随着湍流强度的增加,功率不足会减少。针对四个不同的风力涡轮机间距确定功率不足,并针对稳定性分为以下类别:非常稳定,稳定和其他(接近中性到非常不稳定)。条件越稳定,功率不足就越大。

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