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Bulk mixing and decoupling of the Nocturnal Boundary Layer Characterised Using a Ubiquitous Natural Tracer

机译:使用无处不在的自然示踪剂表征的夜间边界层的大量混合和去耦

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摘要

Vertical mixing of the nocturnal stable boundary layer (SBL) over a complex land surface is investigated for a range of stabilities, using a decoupling index () based on the 2-50 m bulk gradient of the ubiquitous natural trace gas radon-222. The relationship between and the bulk Richardson number () exhibits three broad regions: (1) a well-mixed region () in weakly stable conditions (); (2) a steeply increasing region () for "transitional" stabilities (); and (3) a decoupled region (-1.0) in very stable conditions (). exhibits a large variability within individual bins, however, due to a range of competing processes influencing bulk mixing under different conditions. To explore these processes in - space, we perform a bivariate analysis of the bulk thermodynamic gradients, various indicators of external influences, and key turbulence quantities at 10 and 50 m. Strong and consistent patterns are found, and five distinct regions in - space are identified and associated with archetypal stable boundary-layer regimes. Results demonstrate that the introduction of a scalar decoupling index yields valuable information about turbulent mixing in the SBL that cannot be gained directly from a single bulk thermodynamic stability parameter. A significant part of the high variability observed in turbulence statistics during very stable conditions is attributable to changes in the degree of decoupling of the SBL from the residual layer above. When examined in - space, it is seen that very different turbulence regimes can occur for the same value of , depending on the particular combination of values for the bulk temperature gradient and wind shear, together with external factors. Extremely low turbulent variances and fluxes are found at 50 m height when and (fully decoupled). These "quiescent" cases tend to occur when geostrophic forcing is very weak and subsidence is present, but are not associated with the largest bulk temperature gradients. Humidity and net radiation data indicate the presence of low cloud, patchy fog or dew, any of which may aid decoupling in these cases by preventing temperature gradients from increasing sufficiently to favour gravity wave activity. The largest temperature gradients in our dataset are actually associated with smaller values of the decoupling index (), indicating the presence of mixing. Strong evidence is seen from enhanced turbulence levels, fluxes and submeso activity at 50 m, as well as high temperature variances and heat flux intermittencies at 10 m, suggesting this region of the - distribution can be identified as a top-down mixing regime. This may indicate an important role for gravity waves and other wave-like phenomena in providing the energy required for sporadic mixing at this complex terrain site. © 2013, Springer.
机译:使用基于普遍存在的自然痕量气体ra-222的2-50 m体积梯度的解耦指数(),研究了复杂陆地表面上夜间稳定边界层(SBL)的垂直混合的稳定性。与整体理查森数之间的关系()表现出三个宽泛的区域:(1)在弱稳定条件下的良好混合区域(); (2)“过渡”稳定性()的急剧增加的区域(); (3)在非常稳定的条件()下的去耦区域(-1.0)。但是,由于一系列相互竞争的过程会影响不同条件下的整体混合,因此在各个容器中的碳氢化合物表现出很大的变异性。为了在太空中探索这些过程,我们对整体热力学梯度,各种外部影响指标以及10 m和50 m处的关键湍流量进行了双变量分析。发现了强而一致的模式,并确定了空间中的五个不同区域并与原型稳定边界层机制相关联。结果表明,引入标量解耦指数可以获得有关SBL中湍流混合的有价值的信息,而这些信息不能直接从单个整体热力学稳定性参数获得。在非常稳定的条件下,在湍流统计中观察到的高可变性的很大一部分归因于SBL与上方残留层的去耦程度的变化。在太空中检查时,可以看到,对于相同的,可能会出现非常不同的湍流状态,这取决于整体温度梯度和风切变的值的特定组合以及外部因素。当和(完全解耦)时,在50 m高处发现极低的湍流变化和通量。当地转作用力非常弱并且存在沉降时,往往会发生这些“静态”情况,但这些情况与最大的体温梯度无关。湿度和净辐射数据表明存在低云,片状雾或露水,在这些情况下,任何一种都可以通过防止温度梯度充分增加以利于重力波活动而有助于解耦。我们数据集中最大的温度梯度实际上与较小的解耦指数()相关联,表明存在混合。从增强的湍流水平,通量和50m处的亚速流活动,以及10m处的高温变化和热通量间歇性方面都可以看到有力的证据,这表明-分布的这一区域可以识别为自上而下的混合方式。这可能表明重力波和其他波状现象在提供此复杂地形站点上的零星混合所需的能量方面起着重要作用。 ©2013,施普林格。

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