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干旱区云凝结核分布及其影响因子的观测研究
引用本文:岳岩裕,牛生杰,桑建人,吕晶晶.干旱区云凝结核分布及其影响因子的观测研究[J].中国环境科学,2010,30(5):593-598.
作者姓名:岳岩裕  牛生杰  桑建人  吕晶晶
作者单位:1. 南京信息工程大学大气物理学院,气象灾害省部共建教育部重点实验室,江苏,南京,210044
2. 宁夏气象科学研究所,宁夏,银川,750002
基金项目:国家重点基础研究发展规划(973计划),气象灾害省部共建教育部重点实验室基金 
摘    要:利用DMT CCN仪对宁夏盐池、银川地区地面及高空的云凝结核(CCN)进行实时连续观测.大量资料分析结果表明, CCN日变化明显,受人为因素影响,清晨和傍晚出现高值.夜晚温度与CCN浓度呈正相关,白天相反;强降水对CCN具有一定冲刷作用;沙尘气溶胶没有有效增加盐池地区的CCN浓度.与华北地区比较,银川、盐池地区CCN浓度偏低.此外,研究表明,过饱和度越高,活化CCN浓度越大.根据N=CSK拟合活化谱,银川属于典型大陆性核谱.由于云内清除作用,高空CCN浓度下降明显,但逆温层的存在使得该区CCN浓度累积增加.

关 键 词:干旱区  云凝结核  气象要素  高空观测  
收稿时间:2009-09-28;

Observational study on the distribution of cloud condensation nuclei and its causes in drought region
YUE Yan-yu,NIU Sheng-jie,SANG Jian-ren,L Jing-jing.Observational study on the distribution of cloud condensation nuclei and its causes in drought region[J].China Environmental Science,2010,30(5):593-598.
Authors:YUE Yan-yu  NIU Sheng-jie  SANG Jian-ren  L Jing-jing
Institution:YUE Yan-yu,NIU Sheng-jie,SANG Jian-ren,L(U) Jing-jing
Abstract:Using a droplet measurement technologies(DMT)cloud condensation nuclei (CCN) counter,distributions of CCN on the ground and in the air in Yanchi and Yinchuan of Ningxia Hui Autonomous Region wefe obtained.It was concluded that CCN had a distinctive diurnal cycle.The high concentration appears in the early morning and evening,affected by human activities.There was a positive correlation of CCN concentration with temperature during the day,and a negative correlation at the night.Heavy rainfall had a scavenging effect on CCN concentration,while dust aerosol did not increase CCN cencen Wation effectively.With respectto other regions in North China,the CCN concentration in Yanchi was relatively kow.With increasing supersaturation,more particles were activated.According to the expression N=CSk,the fitted spectra parameters in Yinchuan showed continental characteristic.In the air.CCN concentration decreased with height,especially in the cloud,which was due to scavenging while an inversion layer tended to increase CCN concentration.
Keywords:drought region  cloud condensation nuclei  meteorological condition  upper-air observation
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