基于多種資料對成都輻射平流霧生消機理分析
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成都市氣象局自立課題“微波輻射監測資料在短臨預報中的應用研究”資助


Genesis and Dissipation Mechanisms of RadiationAdvection Fogs in Chengdu Based on Multiple Detection Data
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    摘要:

    本文利用風廓線雷達、地基微波輻射計、地面自動站、秒級探空和NCEP/NCAR(1°×1°)再分析資料,對2016年12月成都的3次輻射平流霧過程進行生消機理分析。結果表明:①高空500 hPa受西北氣流控制,700 hPa干層和1.5 km下弱風速的維持,利于近地面快速輻射冷卻形成逆溫層,為霧的形成提供了熱力條件。②垂直方向上無運動或微弱運動,為霧的形成和發展提供了動力條件;貼地層弱西南暖濕氣流(≤4 m/s)攜帶的水汽在成都地區輻合,為強濃霧的形成提供了充足的水汽條件。③貼地逆溫層和逆露點溫度層(高度低于逆溫層高度)同時存在,對霧的預報有較好的指示意義。④午后,雙逆溫層的維持,近地面風速接近靜風,是輻射平流霧維持的重要原因。⑤西南暖濕氣流消失或水汽輻合移出本地之后,近地面逆溫層消失或霧頂上部干空氣的卷入,是導致輻射平流霧最終消散的原因。

    Abstract:

    The genesis and dissipation mechanisms of three radiationadvection fog events in Chengdu of December 2016 are analyzed, using the data from wind profile radar, microwave radiometers, automatic weather stations, secondlevel sounding data and NCEP/NCAR reanalysis data (1°×1°). The results indicate: (1) the northwest airstream at 500 hPa, maintenance of dry layer at 700 hPa and weak wind below 1.5 km height were beneficial to the rapid radiation cooling near the ground, forming the inversion layer and offering thermal conditions for the formation of the fog. (2) No movement or less movement in vertical direction offered dynamic conditions for the formation and development of fogs. The convergence caused by weak southwest warm and moist air (≤4 m/s) near the ground in Chengdu provided ample water vapor conditions for the formation of the strong fogs. (3) The coexistence of surface inversion layer and dewpoint inverse layer (lower than the height of the inversion layer) better indicates the occurrence of the fogs. (4) In the afternoon, double inversion layers and weak winds near the surface were important reasons for the maintenance of radiationadvection fogs. (5) After the southwest warm and moist air disappeared or water vapor convergence removed out of Chengdu, the disappearance of the nearsurface inversion layer or entrainment of dry air at the top of fogs is the cause of the final disappearance of the radiation advection fogs.

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張濤,唐錢奎,李柏,朱心悅.基于多種資料對成都輻射平流霧生消機理分析[J].氣象科技,2019,47(1):70~78

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  • 收稿日期:2017-11-07
  • 定稿日期:2018-10-29
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  • 在線發布日期: 2019-02-27
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