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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Processes that generate and deplete liquid water and snow in thin midlevel mixed-phase clouds
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Processes that generate and deplete liquid water and snow in thin midlevel mixed-phase clouds

机译:过程生成和耗尽液态水和雪在薄中层混合相位的云

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This paper uses a numerical model to investigate microphysical, radiative, and dynamical processes in mixed-phase altostratocumulus clouds. Three cloud cases are chosen for study, each of which was observed by aircraft during the fifth or ninth Complex Layered Cloud Experiment (CLEX). These three clouds are numerically modeled using large-eddy simulation (LES). The observed and modeled clouds consist of a mixedphase layer with a quasi-adiabatic profile of liquid, and a virga layer below that consists of snow. A budget of cloud (liquid) water mixing ratio is constructed from the simulations. It shows that large-scale ascent/descent, radiative cooling/heating, turbulent transport, and microphysical processes are all significant. Liquid is depleted indirectly via depositional growth of snow (the Bergeron-Findeisen process). This process is more influential than depletion of liquid via accretional growth of snow. Also constructed is a budget of snow mixing ratio, which turns out to be somewhat simpler. It shows that snow grows by deposition in and below the liquid (mixed-phase) layer, and sublimates in the remainder of the virga region below. The deposition and sublimation are balanced primarily by sedimentation, which transports the snow from the growth region to the sublimation region below. In our three clouds, the vertical extent of the virga layer is influenced more by the profile of saturation ratio below the liquid (mixed-phase) layer than by the mixing ratio of snow at the top of the virga layer.
机译:本文使用一个数值模型来调查微观物理学的、辐射和动力学过程在混合相位altostratocumulus云。云选择病例进行研究,每个飞机在第五或观察到吗第九复杂层状云实验(CLEX)。这三个云数值建模使用大涡模拟(LES)。云由一个mixedphase层与建模准绝热的概要的液体,幡状云下面层,由雪。云(液体)水混合比从模拟。上升/下降,辐射冷却/加热,混乱的交通,和微观物理学的过程都是重要的。间接地通过沉积雪(的增长Bergeron-Findeisen过程)。影响力比消耗的液体通过深深地增长的雪。雪混合比的预算结果有点简单。沉积在下面液体(混合相位)层,并在剩余的升华物幡状云下面的地区。升华是主要由平衡沉积,传输的雪增长地区下面的升华地区。我们的三个云,垂直的程度幡状云层受到的影响更大饱和度低于液体(混合相位)层比顶部的混合比的雪幡状云的层。

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