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Retrieval of Upper Tropospheric Relative Humidity by the GMS-5 Water Vapor Channel: A Study of the Technique
作者姓名:HUANG Yi  WANG Meihu  MAO Jietai
作者单位:DepartmentofAtmosphericSciences.PekingUniversity,Beijing100871
基金项目:This work was supported by the National Natural Science Foundation of China under Grant No
摘    要:This paper presents an analysis of a technique for retrieving upper tropospheric relative humidity through the GMS-5 satellite‘s 6.7-micron water vapor channel brightness temperature. NCEP analysis shows that a critical assumption of the retrieval theory, namely the constant temperature lapse rate,matches only in the tropical atmosphere. By statistical analyses of brightness temperature simulated by a radiative transfer model and of relative humidity, we examine the effect of lapse rate on this retrieval method and obtain retrieval parameters and error estimates applicable to the GMS-5 satellite over East Asia. If the retrieval parameters are properly chosen, the relative error of retrieving the upper tropospheric relative humidity in this region is less than 10%, and if applied to the low-latitude summer atmosphere, it is less than 5%.

关 键 词:对流层  气象卫星  统计分析  大气辐射  温度  湿度
收稿时间:21 July 2008

Retrieval of upper tropospheric relative humidity by the GMS-5 water vapor channel: A study of the technique
HUANG Yi,WANG Meihu,MAO Jietai.Retrieval of upper tropospheric relative humidity by the GMS-5 water vapor channel: A study of the technique[J].Advances in Atmospheric Sciences,2004,21(1):53-60.
Authors:HUANG Yi  WANG Meihua  MAO Jietai
Institution:Department of Atmospheric Sciences,Peking University,Beijing 100871;Department of Atmospheric Sciences,Peking University,Beijing 100871;Department of Atmospheric Sciences,Peking University,Beijing 100871
Abstract:This paper presents an analysis of a technique for retrieving upper tropospheric relative humidity through the GMS-5 satellite's 6.7-micron water vapor channel brightness temperature.NCEP analysis shows that a critical assumption of the retrieval theory,namely the constant temperature lapse rate,matches only in the tropical atmosphere.By statistical analyses of brightness temperature simulated by a radiative transfer model and of relative humidity,we examine the effect of lapse rate on this retrieval method and obtain retrieval parameters and error estimates applicable to the GMS-5 satellite over East Asia.If the retrieval parameters are properly chosen,the relative error of retrieving the upper tropospheric relative humidity in this region is less than 10%,and if applied to the low-latitude summer atmosphere,it is less than 5%.
Keywords:upper troposphere  water vapor  satellite retrieval  brightness temperature
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