J4 ›› 2010, Vol. 28 ›› Issue (1): 41-48.

• 论文 • 上一篇    下一篇

雾日期间边界层特性分析

刘建忠张 蔷杨道侠   

  1. 北京市人工影响天气办公室,北京 100089
  • 收稿日期:2009-11-23 修回日期:2009-12-22 出版日期:2010-04-01 发布日期:2010-04-01
  • 作者简介:刘建忠(1967-),男,汉族,高级工程师,主要从事人工影响天气和航空气象研究
  • 基金资助:

    科技部“十一五”支撑课题“北京地区人工消雾技术研究”(2006BAC12B004)和北京市自然基金资助项目“地基微波辐射计产品性能分析与应用研究”及公益性行业科研专项“京津地区低能见度雾霾天气监测研究”(GYHY200806001 - 4)共同资助

Analysis of Boundary Layer Character in the Fog Period in Beijing

LIU Jian-Zhong, ZHANG  Qiang, YANG Dao-Xia   

  1. Beijing W eatherM odif ication Off ice, B eijing 100089, China
  • Received:2009-11-23 Revised:2009-12-22 Online:2010-04-01 Published:2010-04-01

摘要:

 用常规观测资料、微波辐射仪和风廓线仪等资料对2007年10月25~27日期间雾天气过程进行分析。结果表明: (1)此次雾天气过程是在大的天气背景下形成的,高低空和地面形势均有利于雾形成和维持; (2)微波辐射仪反演产品可以清楚地看出高低空湿度的配置以及雾维持的机理;(3)进一步分析温湿特点可以看出,地面温度、2 000 m高度下的逆温厚度和最大强度变化与能见度、雾、浓雾、强浓雾之间的转换关系密切;雾出现对应地面降温幅度最大,雾期间有逆温(特别是贴地逆温) ;雾期间地面相对湿度均在83%以上,浓雾在90%以上,强浓雾在97%以上;雾刚生成并没有液态水, 1 h后出现液态水,在天气系统接近前均是100 m高度上液态水含量最大; (4)雾期间边界层内600~700 m高度以下,水平风速比较小,在600 m高度上下水平风速切变很明显; (5)雾过程期间边界层维持微弱的上升和下沉运动。

关键词: 雾, 边界层特性, 非常规探测资料

Abstract:

Based on the conventional observation data, the ground - based 12 - channel radiometer and wind p rofile radar data from October 25 to 27 2007, the fogweather event occurred in Beijingwas analyzed. The results are as follows: (1) The fog event occurred under the large - scale weather background, and the upper, low and surface weather situation were helpful to the fog’s forming and lasting; (2) With the radiometer retrieved p roduction, the upper, low and surface humidity scheme and the fog lastingmechanism could be found very clearly; (3) The surface temperature, the inversion layer thickness and its biggest intensity variation under 2 000 meters were concerned nearly with the fog change and visibility. The fog beginningwas consistentwith the biggest range of the surface temperature dropp ing, and there was the temperature inversion especially grounding inversion during the fog period. The surface relative humidity was above 83% , and 90% for thick fog, 97% for strong fog. There wasn’t some liquid water in the beginning of the fog, but after one hour the liquid water appeared at the level of 100 meters, and itwas biggest at this level before the weather system coming;(4) The horizontalwind speed was smaller under the level of 600 or 700 meters, and near the level of 600 meters the wind shearwas
obvious during the fog period; (5) It kep t the feeble up and down airflow in the boundary layer during the fog period.

Key words: fog, boundary layer character, non - conventional observational data

中图分类号: