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兰州市空中水汽含量和水汽通量变化研究
引用本文:刘世祥,王遂缠,刘碧,黄玉霞,王有生,蒲肃.兰州市空中水汽含量和水汽通量变化研究[J].甘肃气象,2006,24(1):18-22.
作者姓名:刘世祥  王遂缠  刘碧  黄玉霞  王有生  蒲肃
作者单位:甘肃省干旱气候变化与减灾重点实验室,甘肃省干旱气候变化与减灾重点实验室,重庆市合川县官渡中学,甘肃省干旱气候变化与减灾重点实验室,甘肃省干旱气候变化与减灾重点实验室,甘肃省干旱气候变化与减灾重点实验室 甘肃兰州730020,甘肃省专业气象台,甘肃兰州730020,甘肃兰州730020,重庆合川401541,甘肃兰州730020,甘肃省专业气象台,甘肃兰州730020,甘肃兰州730020,甘肃省专业气象台,甘肃兰州730020,甘肃兰州730020,甘肃省专业气象台,甘肃兰州730020
基金项目:甘肃省气象局科研项目 , 科技部西部开发科技行动计划
摘    要:利用历年的高空和地面资料,深入分析了兰州市空中水汽含量和水汽通量的变化特征。结果表明:(1)夏季空中水汽含量和水汽输送相对较多,冬季相对较少;2~7月是水汽含量的增长期,9~1月是递减期,8月与7月持平;97%的水汽集中在400 hPa以下;(2)兰州市空中水汽变化与降水量、降水日数、气温的变化有明显的一致性,也存在一定的差别;(3)兰州市空中水汽输送强度中心接近500hPa高度;冬季水汽日变化最大层位于700~600 hPa,这与我国东部地区空中水汽输送高度和边界层水汽日变化特征有明显的区别。

关 键 词:水汽含量  水汽输送  变化特征
文章编号:1006-7639(2006)-01-0018-05
收稿时间:2005-08-23
修稿时间:2005-08-232005-11-18

Trend Analysis of the Water Vapor Content and Its Transport over Lanzhou City
LIU Shi-xiang,WANG Sui-chan,LIU Bi,HUANG Yu-xia,WANG You-sheng,PU Su.Trend Analysis of the Water Vapor Content and Its Transport over Lanzhou City[J].Gansu Meteorology,2006,24(1):18-22.
Authors:LIU Shi-xiang  WANG Sui-chan  LIU Bi  HUANG Yu-xia  WANG You-sheng  PU Su
Institution:1. Key Laboratory of Arid Climatic Change and Reducing Disaster of Gansu Province, Lanzhou 730020, China; 2. Gansu Professional Meteorological Ohservatory, Lanzhou 730020. China; 3. Guandu Middle Schol, Heehuan 401541 , Chongqing, China
Abstract:Based on the data of aerological and surface meteorological observation for many years,the trend of water vapor content and its transport over Lanzhou city were analyzed deeply.Results are as follows:(1)The water vapor content and its transport are relatively more in summer than that in winter,and the water vapor content increases from Feb to Jul,decreases from Sep to Jan,and keeps invariable in Jul and Aug;nearly 97% water vapor content concentrates below the height of 400 hPa;(2)The trend of water vapor content distinctly corresponds to the change of precipitation,rainy days and temperature,but also there are some differences;(3)Over Lanzhou city,the large center of water vapor transport is near the height of 500 hPa,the maximum diurnal variation of water vapor is at the layer of 700 ~ 600 hPa in winter,and these are obviously different from those over the east of China.
Keywords:water vapor content  water vapor transport  trend
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