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Kinematics, cloud microphysics and spatial structures of tropical cloud clusters: A two-dimensional cloud-resolving modeling study

机译:热带云团的运动学,云微观物理学和空间结构:二维云解析模型研究

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摘要

Kinematics, cloud microphysics and spatial structures of tropical cloud clusters are investigated using hourly outputs from a two-dimensional cloud-resolving model simulation. The model is forced by the large-scale vertical velocity, zonal wind and horizontal advections obtained from Tropical Ocean Global Atmosphere Coupled Ocean-Atmosphere Response Experiment (TOGA COARE). A period of 1600-2300 LST 21 December 1992 is selected for this study when the zonal-mean westerly winds in the lower troposphere intensify while the zonal-mean easterly winds above weaken. Under the vertical-shear environment, there are a westward-propagating cloud cluster, a newly-formed cloud cluster, and four eastward-moving cloud clusters. Two weak eastward-moving cloud clusters merge into strong westward-moving cloud clusters. Merged clouds display notable growth in the eastern edge, indicating that merging processes enhance convection. The development of the new cloud at the western edge of the existing cloud cluster before merging may account for the westward propagation of cloud cluster group, while the advection of the maximum total hydrometeor mixing ratio by the westerly winds after merging may cause the eastward propagation of individual cloud clusters.
机译:利用二维云解析模型模拟的每小时输出,研究了热带云团的运动学,云微观物理学和空间结构。该模型是由热带海洋全球大气耦合海洋-大气响应实验(TOGA COARE)获得的大规模垂直速度,纬向风和水平对流推动的。当对流层低层的纬向平均纬向风偏强而高于对流层的纬向平均纬向风减弱时,则选择1992年12月21日的1600-2300 LST。在垂直剪切环境下,有一个向西传播的云团,一个新形成的云团和四个向东移动的云团。两个弱的向东移动的云团合并为强的向西移动的云团。合并的云在东部边缘显示出明显的增长,表明合并过程增强了对流。合并前在现有云团西边缘的新云的发展可能解释了云团群向西传播,而合并后的西风对流最大水汽混合总比的平流可能导致云团向东传播。单个云集群。

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