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机构地区:[1]南京信息工程大学气象灾害预报预警与评估协同创新中心、中国气象局气溶胶与云降水重点开放实验室,南京210044 [2]贵州省山地环境气候研究所,贵阳550002
出 处:《气象科学》2016年第3期389-395,共7页Journal of the Meteorological Sciences
基 金:公益性行业(气象)科研专项(GYHY201306051);国家自然科学基金资助项目(41375158;41030962)
摘 要:本文利用2014年1月贵州西北部威宁观测的激光雨滴谱、探空和常规气象要素等资料,分析了冻雨发生期间的气象条件、雨滴的微物理特征及谱分布特征,并与南方其他地区冻雨进行了对比。结果表明:(1)冻雨发生期间,地面以静止锋系统为主,大气存在逆温,云层薄、云底低,近地面温度低、湿度高、风速小。(2)4次冻雨过程均为冻毛毛雨过程,雨滴平均直径为037 mm,雨量极微弱,平均值为002 mm。数浓度与液水含量高度正相关。平均谱分布拟合结果,Γ分布好于M-P分布。(3)与中国其他南方地区冻雨相比,雨滴直径、雨强均偏小,平均谱分布较窄,小滴多。(4)威宁冻雨的微物理特征符合"过冷暖雨"的形成机制,云贵准静止锋的特性和该地高海拔山地地形可能是导致该地滴谱窄、雨滴直径和雨量小的主要原因。By using the data from an optical disdrometer, sounding and meteorological elements ob- served by Weining observation site in northwestern Guizhou in January 2014, the meteorological condi- tions, droplets characteristics and raindrop size distribution of the freezing precipitation were analyzed, and compared with the freezing precipitation in other southern cities of China. Results show that: (1) during the freezing precipitation events, the dominate synoptic system was quasi-stationary front, and the inversion existed in troposphere. The cloud thickness was thin and the cloud base was low. The near-surface temperature was below 0℃, relative humidity was above 85%, and the wind speed was low. (2) All freezing precipitation events were freezing drizzle, whose average diameter was 0.37mm and aver- age rain intensity was 0.02mm. The liquid water content was highly correlated with the number concentra- tion. The fitting result of raindrop size distribution shows F distribution was better than the M-P distribu- tion. (3) Compared to other regions of southern China, Weining had smaller raindrops, weaker rain in-tensity and narrower spectra. (4) The freezing precipitation events in Weining took place through "super cooled warm rain" process, and the Yunnan-Guizhou quasi-stationary front and the high altitude moun- tainous terrain was likely responsible for the droplets characteristics.
分 类 号:P426.64[天文地球—大气科学及气象学]
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