廣西秋季層狀云微物理特征分析
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廣西區氣象局氣象科研計劃項目(桂氣科2016M05)和中國氣象局云霧物理環境重點開放實驗室開放課題(2017Z01612)共同資助


Microphysical Characteristics of Stratiform Clouds in Autumn in Guangxi
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    摘要:

    利用2012年11—12月在廣西進行的11架次飛機云物理探測資料對層狀云宏微觀物理結構特征進行研究,探討層狀云降水機制。結果表明:廣西層狀云微物理特征與我國其他地區的存在顯著差異。層狀云典型的微物理垂直結構為在云下層是由凝結作用生成云滴,隨上升氣流發展,云滴數濃度、平均直徑和液態水含量隨高度逐步增加,云滴譜拓寬,譜型向大尺度的方向擴展,至云中上層增大至最大值后隨高度減小。冷暖混合云結構的高層云冷云部分的冰相粒子落入暖層后對其微物理結構產生影響,主要是使云滴譜展寬,CIP云滴平均直徑垂直分布變幅增大,有利于暖層中碰并過程的啟動和發展。層積云微物理水平分布呈現不連續跳躍式變化特征,存在對流泡結構,對流泡內各微物理量高于泡外,云滴譜型向大尺度移動,對流泡結構是層積云形成降水的重要機制。

    Abstract:

    Based on the cloud physical probe data of 11 aircrafts carried out in Guangxi in November and December 2012, the macro and micro physical structure characteristics of stratiform clouds are studied and the precipitation mechanism of stratiform clouds is discussed. The main results show that the microphysical characteristics of stratiform clouds in Guangxi are significantly different from those in other parts of China. The typical vertical microphysical structure of stratiform clouds is: droplets are generated by condensation in the lower layer and develop with the updraft; the number concentration and average diameters of cloud droplets and liquid water content gradually increased with height; the droplet spectrum broadened, and the spectral pattern extended to large scale; they increased to a maximum value at the upper level of the clouds and decreased with height subsequently. The ice particles in the layer of altostratus with a cloud structure of cool and warm mixed affected the microphysical structure after falling into the warm layer, mainly broadening the droplet spectrum and increasing the CIP vertical distribution amplitude of droplet diameters, which was conducive to the initiation and development of the collisioncoalescence process in the warm layer. The microphysical horizontal distribution of the stratocumulus showed discontinuous jump variation and there was the convection bubble structure. The microphysical quantities within the convection bubble were higher than those outside the bubble; cloud droplet spectral pattern varied toward large scale; the convection bubble structure was the important mechanism for the formation of stratocumulus precipitation.

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張正國,盧廣獻,湯達章,韋增岸.廣西秋季層狀云微物理特征分析[J].氣象科技,2018,46(3):545~555

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歷史
  • 收稿日期:2017-04-14
  • 定稿日期:2017-12-21
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  • 在線發布日期: 2018-06-28
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