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A Climatological Study of Boundary Layer Wind Speed Using a Meso-y-Scale Higher-Order Closure Model

机译:中尺度尺度高阶闭合模型的边界层风速气候学研究

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摘要

A mesoscale higher-order closure atmospheric boundary layer model has been used to get more detailed information than is possible from observations regarding horizontal and vertical variations of the wind in an area in southeastern Sweden. To keep thecomputer time realistic, the number of model runs has to be kept at a minimum. The factors primarily affecting the wind field were thus identified. To get accurate results it was necessary to make simulations representing the four seasons, eight wind directions, three values of the geostrophic wind speed, and three mean temperatures over land, while the sea surface temperature was kept at its monthly average. The model was run for these 288 conditions with the monthly mean of the daily temperature cycle at screen height over land in older to include the effects of variations in thermal stratification. The simulated wind fields were weighted together using climatological data on the geostrophic wind and the screen height temperature, determined from weather stations in the area. A comparison between modeled climatological mean wind and observations at three weather stations show good agreement with both monthly and annual data.
机译:中尺度高阶封闭大气边界层模型已被用于获得比从瑞典东南部地区的风的水平和垂直变化观察中获得的更详细的信息。为了使计算机时间保持现实,模型运行的次数必须保持最少。从而确定了主要影响风场的因素。为了获得准确的结果,有必要进行模拟,以代表四个季节,八个风向,地转风速的三个值以及陆地上的三个平均温度,同时将海表温度保持在月平均水平。该模型是针对这288个条件运行的,其中年龄较大的人在陆地上的屏幕高度处的每日温度周期的月平均数,以包括热分层变化的影响。使用从该地区的气象站确定的地转风和屏幕高度温度的气候数据对模拟风场进行加权。模拟的气候平均风与三个气象站的观测结果之间的比较表明,该数据与月度和年度数据均吻合良好。

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