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Weibull Wind-Speed Distribution Parameters Derived from a Combination of Wind-Lidar and Tall-Mast Measurements Over Land, Coastal and Marine Sites

机译:威布尔风速分布参数源自陆地,沿海和海洋地区的风激光和高桅杆测量结果的组合

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Wind-speed observations from tall towers are used in combination with observations up to 600 m in altitude from a Doppler wind lidar to study the long-term conditions over suburban (Hamburg), rural coastal (Hovsore) and marine (FINO3) sites. The variability in the wind field among the sites is expressed in terms of mean wind speed and Weibull distribution shape-parameter profiles. The consequences of the carrier-to-noise-ratio (CNR) threshold-value choice on the wind-lidar observations are revealed as follows. When the wind-lidar CNR is lower than a prescribed threshold value, the observations are often filtered out as the uncertainty in the wind-speed measurements increases. For a pulsed heterodyne Doppler lidar, use of the traditional -22 dB CNR threshold value at all measuring levels up to 600 m results in a 7 % overestimation in the long-term mean wind speed over land, and a 12 % overestimation in coastal and marine environments. In addition, the height of the profile maximum of the shape parameter of the Weibull distribution (so-called reversal height) is found to depend on the applied CNR threshold; it is found to be lower at small CNR threshold values. The reversal height is greater in the suburban (high roughness) than in the rural (low roughness) area. In coastal areas the reversal height is lower than that over land and relates to the internal boundary layer that develops downwind from the coastline. Over the sea the shape parameter increases towards the sea surface. A parametrization of the vertical profile of the shape parameter fits well with observations over land, coastal regions and over the sea. An applied model for the dependence of the reversal height on the surface roughness is in good agreement with the observations over land.
机译:高塔的风速观测与多普勒测风激光雷达在最高600 m处的观测结合使用,以研究郊区(汉堡),农村沿海地区(Hovsore)和海洋地区(FINO3)的长期条件。站点之间风场的可变性用平均风速和威布尔分布形状参数曲线表示。载噪比(CNR)阈值选择对风雷达观测的影响如下所示。当风车CNR低于规定的阈值时,随着风速测量不确定度的增加,观测值通常会被滤除。对于脉冲外差多普勒激光雷达,在不超过600 m的所有测量水平上使用传统的-22 dB CNR阈值会导致陆地上的长期平均风速高估7%,而沿海地区和沿海地区的高估12%。海洋环境。此外,发现威布尔分布的形状参数的轮廓最大值的高度(所谓的反转高度)取决于所应用的CNR阈值。发现它在较小的CNR阈值下较低。郊区(高粗糙度)的反转高度大于农村(低粗糙度)的反转高度。在沿海地区,逆转高度低于陆地上的逆转高度,并且与沿海岸线顺风发展的内部边界层有关。在海上,形状参数朝向海面增加。形状参数的垂直轮廓的参数化非常适合在陆地,沿海地区和海上进行的观测。反向高度对表面粗糙度的依赖性的应用模型与陆地上的观测结果非常吻合。

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