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A Study on the Effect of Nudging on Long-Term Boundary Layer Profiles of Wind and Weibull Distribution Parameters in a Rural Coastal Area

机译:裸露对农村沿海地区风和威布尔分布参数的长期边界层剖面影响的研究

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By use of 1 yr of measurements performed with a wind lidar up to 600-m height, in combination with a tall meteorological tower, the impact of nudging on the simulated wind profile at a flat coastal site (H0vs0re) in western Denmark using the AdvancedResearch version of the Weather Research and Forecasting model (WRF) is studied. It was found that the mean wind speed, the wind direction change with height, and the wind power density profiles are underestimated with the configuration of WRF used and that the impact of nudging on the simulated mean values was minor. Nudging was found to reduce the scatter between the simulated and measured wind speeds, expressed by the root-mean-square error, by about 20% between altitudes of 100 and 500 m. The root-mean-square error was nearly constant with height for the nudged case (—2.2 m s-1) and slightly increased with height for the nonnudged one, reaching 2.8 m s-1 at 300 and 500 m. In studying the long-term wind speed variability with the Weibull distribution, it was found that nudging had a minor effect on the scale parameter profile, which is closely connected to the mean wind speed. Improvement by nudging was seen on the profile of the shape parameter. Without nudging, the shape parameter was underestimated at all heights; with nudging, the agreement was good up to about 100 m and above that height the shape parameter was underestimated.
机译:通过对高达600米高的激光雷达和高层气象塔进行的1年测量,使用AdvancedResearch对丹麦西部平坦沿海站点(H0vs0re)的模拟风廓线进行微调的影响研究了天气研究和预报模型(WRF)的版本。结果发现,所使用的WRF的配置会低估平均风速,风向随高度的变化以及风力密度曲线,并且微调对模拟平均值的影响很小。发现在100和500 m的海拔高度之间,通过微调可以将模拟风速和实测风速之间的分散(以均方根误差表示)降低约20%。对于轻推情况(-2.2 m s-1),均方根误差随高度几乎恒定,而对于轻推情况,均方根误差随高度略有增加,在300和500 m时达到2.8 m s-1。在研究具有威布尔分布的长期风速变异性时,发现微调对尺度参数分布的影响较小,而尺度参数分布与平均风速密切相关。在形状参数的轮廓上可以看到通过捏合得到的改善。不加任何改动,形状参数在所有高度都被低估了。轻推后,在大约100 m处的吻合度都很好,在该高度以上时,形状参数被低估了。

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