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A Primary Study of the Variations of Vertical Radiation with the Beijing 325-m Meteorological Tower
作者姓名:WANG Yuesi  HU Bo  LIU Guangren
作者单位:InstituteofAtmosphericPhysics,ChineseAcademyofSciences,Beijing100029
摘    要:The Beijing 325-m Meteorological Tower (325MT) is used to observe the vertical variation of solar radiation. Results of the experiments indicate that the automatic radiation monitoring system, including a sun tracker and data collection system, works well and all the specifications meet WMO observation standards. The measurement data show that there is a significant radiation decrease from 320m to the surface, where the difference is only about 30Wm^-2 on light air-pollution days, while the maximum reaches about 110Wm^-2 when heavy pollution appears near the ground. The global UV radiation decreases on heavy air-pollution days and under poor visibility conditions, and the difference between 300m and 8m is larger than on clear days.

关 键 词:北京  气象塔  垂直太阳辐射变化  自动追踪

A primary study of the variations of vertical radiation with the Beijing 325-m Meteorological Tower
WANG Yuesi,HU Bo,LIU Guangren.A Primary Study of the Variations of Vertical Radiation with the Beijing 325-m Meteorological Tower[J].Advances in Atmospheric Sciences,2005,22(2):172-180.
Authors:Wang Yuesi  Hu Bo  Liu Guangren
Institution:Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029,Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029,Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029
Abstract:The Beijing 325-m Meteorological Tower (325MT) is used to observe the vertical variation of solar radiation. Results of the experiments indicate that the automatic radiation monitoring system, including a sun tracker and data collection system, works well and all the specifications meet WMO observation standards. The measurement data show that there is a significant radiation decrease from 320 m to the surface, where the difference is only about 30 W m-2 on light air-pollution days, while the maximum reaches about 110 W m-2 when heavy pollution appears near the ground. The global UV radiation decreases on heavy air-pollution days and under poor visibility conditions, and the difference between 300 m and 8 m is larger than on clear days.
Keywords:meteorological tower  vertical solar radiation variation  automatic sun tracker
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