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Physics of Stratocumulus Top (POST): turbulent mixing across capping inversion

机译:层积顶物理(POST):旋盖过程中的湍流混合

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摘要

pstrongAbstract./strong High spatial resolution measurements of temperature and liquid water content, accompanied by moderate-resolution measurements of humidity and turbulence, collected during the Physics of Stratocumulus Top experiment are analyzed. Two thermodynamically, meteorologically and even optically different cases are investigated. An algorithmic division of the cloud-top region into layers is proposed. Analysis of dynamic stability across these layers leads to the conclusion that the inversion capping the cloud and the cloud-top region is turbulent due to the wind shear, which is strong enough to overcome the high static stability of the inversion. The thickness of this mixing layer adapts to wind and temperature jumps such that the gradient Richardson number stays close to its critical value. Turbulent mixing governs transport across the inversion, but the consequences of this mixing depend on the thermodynamic properties of cloud top and free troposphere. The effects of buoyancy sorting of the mixed parcels in the cloud-top region are different in conditions that permit or prevent cloud-top entrainment instability. Removal of negatively buoyant air from the cloud top is observed in the first case, while buildup of the diluted cloud-top layer is observed in the second one./p.
机译:> >摘要。分析了层积云顶物理实验中收集的温度和液态水含量的高空间分辨率测量结果,以及湿度和湍流的中等分辨率测量结果。研究了两种热力学,气象甚至光学上不同的情况。提出了将云顶区域划分为层的算法。分析这些层的动态稳定性得出的结论是,由于风切变,覆盖云和云顶区域的反演是湍流的,其强度足以克服反演的高静态稳定性。该混合层的厚度适应于风和温度的变化,从而使理查森数梯度保持在其临界值附近。湍流混合控制着整个反演过程,但是这种混合的结果取决于云顶和对流层的热力学性质。在允许或防止云顶夹带不稳定的条件下,对云顶区域中的混合包裹进行浮力分选的效果是不同的。在第一种情况下,观察到从云顶去除了负浮力的空气,而在第二种情况下,观察到了稀释的云层的堆积。

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