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Local Characteristics of the Nocturnal Boundary Layer in Response to External Pressure Forcing

机译:响应外部压力强制夜间边界层的局部特征

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摘要

Geostrophic wind speed data, derived from pressure observations, are used in combination with tower measurements to investigate the nocturnal stable boundary layer at Cabauw, the Netherlands. Since the geostrophic wind speed is not directly influenced by local nocturnal stability, it may be regarded as an external forcing parameter of the nocturnal stable boundary layer. This is in contrast to local parameters such as in situ wind speed, the Monin-Obukhov stability parameter (z/L), or the local Richardson number. To characterize the stable boundary layer, ensemble averages of clear-sky nights with similar geostrophic wind speeds are formed. In this manner, the mean dynamical behavior of near-surface turbulent characteristics and composite profiles of wind and temperature are systematically investigated. The classification is found to result in a gradual ordering of the diagnosed variables in terms of the geostrophic wind speed. In an ensemble sense the transition from the weakly stable to very stable boundary layer is more gradual than expected. Interestingly, for very weak geostrophic winds, turbulent activity is found to be negligibly small while the resulting boundary cooling stays finite. Realistic numerical simulations for those cases should therefore have a comprehensive description of other thermodynamic processes such as soil heat conduction and radiative transfer.
机译:来自压力观测的根瘤性风速数据与塔式测量结合使用,以研究荷兰Cabauw的夜行稳定边界层。由于热脑风速不受局部夜间稳定性的直接影响,因此可以被视为夜间稳定边界层的外部迫使参数。这与诸如原位风速,MONIN-OBUKHOV稳定性参数(Z / L)或本地Richardson号码的参数相反。为了表征稳定的边界层,形成具有相似的出息风速度的清晰天空之夜的集合平均值。以这种方式,系统地研究了近表面湍流特性和近表面湍流特性和复合型材的平均动力学行为。发现分类导致在热脑风速方面逐渐排序诊断的变量。在一个集合感的中,从弱稳定到非常稳定的边界层的过渡比预期更渐进。有趣的是,对于非常弱的地顶尖风,发现湍流活动可以忽略小,而所得到的边界冷却保持有限。因此,这些案例的现实数值模拟应具有对其他热力学过程的综合描述,例如土壤导热和辐射转移。

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