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Observed spatiotemporal variability of boundary-layer turbulence over flat, heterogeneous terrain

机译:在平坦的,异构地形上观察到边界层湍流的时空变化

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In the spring of 2013, extensive measurements with multiple Doppler lidar systems were performed. The instruments were arranged in a triangle with edge lengths of about 3?km in a moderately flat, agriculturally used terrain in northwestern Germany. For 6 mostly cloud-free convective days, vertical velocity variance profiles were calculated. Weighted-averaged surface fluxes proved to be more appropriate than data from individual sites for scaling the variance profiles; but even then, the scatter of profiles was mostly larger than the statistical error. The scatter could not be explained by mean wind speed or stability, whereas time periods with significantly increased variance contained broader thermals. Periods with an elevated maximum of the variance profiles could also be related to broad thermals. Moreover, statistically significant spatial differences of variance were found. They were not influenced by the existing surface heterogeneity. Instead, thermals were preserved between two sites when the travel time was shorter than the large-eddy turnover time. At the same time, no thermals passed for more than 2?h at a third site that was located perpendicular to the mean wind direction in relation to the first two sites. Organized structures of turbulence with subsidence prevailing in the surroundings of thermals can thus partly explain significant spatial variance differences existing for several hours. Therefore, the representativeness of individual variance profiles derived from measurements at a single site cannot be assumed.
机译:在2013年春天,进行了大量多普勒LIDAR系统的广泛测量。该仪器布置在德国西北部的中度平坦的农业使用的地形中的边缘长度约为3 km的三角形。对于6个主要是无云的对流天,计算了垂直速度方差轮廓。被证明的加权平均表面磁通量比来自各个站点的数据更合适,用于缩放方差轮廓;但即便如此,概况的散射大部分大于统计误差。散射不能通过平均风速或稳定来解释,而具有显着增加的方差的时间段包含更宽的热量。具有升高的方差轮廓的升高的时段也可以与宽热量相关。此外,发现了统计上显着的方差空间差异。它们不会受到现有表面异质性的影响。相反,当行驶时间短于大涡流周转时间时,在两个位点之间保存热量。同时,在垂直于前两个网站的第三站点位于垂直于平均风向的第三站点,没有热量传递超过2·h。因此,随着热量周围环境中沉降的有组织的湍流结构可以部分地解释几个小时的显着空间方差差异。因此,不能假设从单个站点的测量导出的各个方差谱的代表性。

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