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首页> 外文期刊>Journal of the Atmospheric Sciences >AN OBSERVATIONAL STUDY OF THE ROLE OF PENETRATING CUMULUS IN A MARINE STRATOCUMULUS-TOPPED BOUNDARY LAYER
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AN OBSERVATIONAL STUDY OF THE ROLE OF PENETRATING CUMULUS IN A MARINE STRATOCUMULUS-TOPPED BOUNDARY LAYER

机译:穿透斜纹在海洋纹状体倾倒边界层中作用的观测研究

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Isolated cumuli penetrating through marine stratocumulus clouds were documented during the Atlantic Stratocumulus Transition Experiment. This paper aims at understanding the role of the penetrating cumulus in regulating stratocumulus and boundary-layer structure through analysis of data from the NCAR Electra aircraft. When penetrating cumulus clouds are present, the boundary layer is generally decoupled from the near-surface air except in the cumulus region. Therefore, air in the cumulus region includes air entrained at the cloud top, as well as air modified by surface processes. In the stratocumulus region, however, entrained inversion air and moist surface air are confined to separate layers. As a result, large horizontal variations are found in scalars, such as ozone and water vapor. Turbulence statistics and conditional sampling of entrainment events in the cumulus and stratocumulus regions indicate that stronger entrainment may occur at the cumulus top compared to the surrounding stratocumulus. This analysis is, however, complicated by insufficient sampling of cloud-top jump conditions in both regions. Convergent flow in the lower boundary layer and compensating diverging how in the upper boundary layer were identified along the flight track. This flow field, together with the vertical coupling of surface air with the cloud layer in the cumulus region, helps to transport moisture upwards from the sea surface and disperse it to the surrounding stratocumulus sheet, thus helping to maintain the stratocumulus cover. [References: 25]
机译:在大西洋层积云过渡实验中记录了穿过海洋层积云的孤立积云。本文旨在通过分析NCAR Electra飞机的数据来了解穿透积云在调节平积云和边界层结构中的作用。当存在穿透性积云时,除了积云区域外,边界层通常与近地表空气分离。因此,积云区域中的空气包括在云顶夹带的空气,以及通过表面过程改性的空气。然而,在平积层区域,夹带的反转空气和潮湿的地面空气被限制在单独的层中。结果,在标量中发现较大的水平变化,例如臭氧和水蒸气。湍流统计和对积云和平积层区域中夹带事件的条件采样表明,与周围平积云相比,积云顶部可能发生更强的夹带。但是,由于两个地区的云顶跳跃条件采样不足,使得该分析变得复杂。下边界层中的会聚流动和补偿沿着飞行轨迹在上边界层中的识别方式有所不同。该流场以及地表空气与积云区域中云层的垂直耦合一起,有助于将水分从海面向上传输并将其分散到周围的平积层中,从而有助于维持平积层的覆盖。 [参考:25]

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