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Extrapolating Satellite Winds to Turbine Operating Heights

机译:将卫星风推算到涡轮运行高度

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摘要

Ocean wind retrievals from satellite sensors are typically performed for the standard level of 10 m. This restricts their full exploitation for wind energy planning, which requires wind information at much higher levels where wind turbines operate. A new method is presented for the vertical extrapolation of satellite-based wind maps. Winds near the sea surface are obtained from satellite data and used together with an adaptation of the Monin-Obukhov similarity theory to estimate the wind speed at higher levels. The thermal stratification of the atmosphere is taken into account through a long-term stability correction that is based on numerical weather prediction (NWP) model outputs. The effect of the long-term stability correction on the wind profile is significant. The method is applied to Envisat Advanced Synthetic Aperture Radar scenes acquired over the south Baltic Sea. This leads to maps of the long-term stability correction and wind speed at a height of 100m with a spatial resolution of 0.028. Calculations of the corresponding wind power density and Weibull parameters are shown. Comparisons with mast observations reveal that NWP model outputs can correct successfully for long-term stability effects and also, to some extent, for the limited number of satellite samples. The satellite-based and NWP-simulated wind profiles are almost equally accurate with respect to those from the mast. However, the satellite-based maps have a higher spatial resolution, which is particularly important in nearshore areas where most offshore wind farms are built.
机译:从卫星传感器获取的海风通常以10 m的标准水准进行。这限制了他们对风能计划的充分利用,这需要在风力涡轮机运行的更高级别上获得风信息。提出了一种基于卫星的风图垂直外推的新方法。海面附近的风是从卫星数据获得的,并与莫宁-奥布霍夫相似性理论的改编一起用于估算更高水平的风速。通过基于数值天气预报(NWP)模型输出的长期稳定性校正来考虑大气的热分层。长期稳定性校正对风廓线的影响很大。该方法适用于在波罗的海南部获取的Envisat高级合成孔径雷达场景。这将得出长期稳定性校正和高度为100m且空间分辨率为0.028时的风速的地图。显示了相应的风能密度和威布尔参数的计算。与桅杆观测值的比较表明,NWP模型的输出可以成功校正长期稳定性影响,并且在一定程度上还可以校正有限数量的卫星样本。与桅杆的风廓线相比,基于卫星和NWP模拟的风廓线几乎同样准确。但是,基于卫星的地图具有较高的空间分辨率,这在建有大多数海上风电场的近岸地区尤其重要。

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