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On the evolution and structure of a radiation fog event in Nanjing

机译:南京一次辐射雾事件的演变与结构

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摘要

An extremely dense radiation fog event during 10–11 December 2007 was studied to understand its macro-/micro-physics in relation to dynamic and thermodynamic structures of the boundary layer, as well as its structural evolution in conjunction with the air-surface exchange of heat and water vapor. The findings are as follows. The extreme radiation fog process was divisible into formation, development, mature, and dissipation phases, depending on microstructure and visibility. This fog event was marked by rapid evolution that occurred after sunrise, when enhanced surface evaporation and cold air intrusion led to a three order of magnitude increase in liquid water content (LWC) in just 20 minutes. The maximum droplet diameter (MDD) increased four-fold during the same period. The fog structure was two-layered, with the top of both the surface-layer and upper-layer components characterized by strong temperature and humidity inversions, and low-level jets existed in the boundary layer above each fog layer. Turbulence intensity, turbulent kinetic energy, and friction velocity differed remarkably from phase to phase: these features increased gradually before the fog formation and decreased during the development phase; during the mature and dissipation phases these characteristics increased and then decreased again. In the development and mature stages, the mean kinetic energy of the lower-level winds decreased pronouncedly, both in the horizontal and vertical directions.
机译:研究了2007年12月10日至11日发生的一次极其浓烈的辐射雾事件,以了解其与边界层的动态和热力学结构有关的宏观/微观物理学,以及与大气表面交换有关的结构演变。热量和水蒸气。调查结果如下。取决于结构和可见度,极端的辐射雾过程可分为形成,发育,成熟和耗散阶段。该雾事件的特征是日出后迅速演变,当时表面蒸发增加和冷空气入侵导致仅20分钟内液体水含量(LWC)升高了三个数量级。在同一时期,最大液滴直径(MDD)增加了四倍。雾状结构是两层的,表层和上层成分的顶部都具有强烈的温度和湿度反演特征,并且在每个雾状层上方的边界层中存在低水平的射流。湍流强度,湍流动能和摩擦速度在各相之间显着不同:这些特征在雾形成之前逐渐增加,而在显影阶段则减小。在成熟和耗散阶段,这些特性先增加后降低。在发育和成熟阶段,低水平风的平均动能在水平和垂直方向上均显着下降。

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  • 来源
    《Advances in Atmospheric Sciences》 |2011年第1期|p.223-237|共15页
  • 作者单位

    Key Laboratory for Atmospheric Physics and Atmospheric Environment, Nanjing University of Information Science &amp Technology, Nanjing, 210044, China;

    Key Laboratory for Atmospheric Physics and Atmospheric Environment, Nanjing University of Information Science &amp Technology, Nanjing, 210044, China;

    Key Laboratory for Atmospheric Physics and Atmospheric Environment, Nanjing University of Information Science &amp Technology, Nanjing, 210044, China;

    Key Laboratory for Atmospheric Physics and Atmospheric Environment, Nanjing University of Information Science &amp Technology, Nanjing, 210044, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanjing; dense fog; dynamic and thermodynamic structures; intrusion; turbulence;

    机译:南京;浓雾;动力和热力结构;侵入;湍流;

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