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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Summertime columnar content of atmospheric water vapor from ground-based Sun-sky radiometer measurements through a new in situ procedure
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Summertime columnar content of atmospheric water vapor from ground-based Sun-sky radiometer measurements through a new in situ procedure

机译:通过新的原位测量法从地面日照辐射计测量的夏季大气水蒸气的柱状含量

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摘要

A new in situ technique for the retrieval of atmospheric water vapor content (i.e., precipitable water content) from Sun photometric direct solar irradiance measurements, taken at the 940 nm wavelength during clear-sky conditions, is presented. The procedure is applied to summer data recorded in 2007, 2008, and 2009 with a Sun-sky radiometer at the San Pietro Capofiume station in the Po valley, Italy. It is a preliminary development of the retrieval procedure providing the columnar water vapor content from measurements performed with PREDE Sun-sky radiometers. The technique brings improvement and innovation by retrieving the best values of constants (a and b), characterizing atmospheric water vapor transmittance while reducing simulation errors, and potentially contains information on seasonal changes in vertical profiles of temperature, air pressure, and moisture at measurement sites. Initially, the in situ procedure needs at least 1 week of independent measurements of precipitable water content taken over a range of solar zenith angles simultaneously with radiometric measurements, but it was also tested for cases in which independent measurements are not available. In the latter, the procedure was started using monthly precipitable water content estimates derived from surface observations of relative humidity, pressure, and temperature. Time patterns and absolute values of precipitable water content retrieved using the in situ procedure were in good agreement with Moderate Resolution Imaging Spectroradiometer retrievals and radiosonde measurements, with correlation coefficients of 0.8-0.9 and low percentage median differences of 7%-13%.
机译:提出了一种从太阳光度法直接太阳辐照度测量中检索大气水蒸气含量(即可沉淀的水含量)的新的原位技术,该测量是在晴空条件下以940 nm波长进行的。该程序适用于意大利Po山谷的San Pietro Capofiume站的2007年,2008年和2009年用太阳天空辐射计记录的夏季数据。这是对检索程序的初步开发,该程序可通过使用PREDE Sun-sky辐射计进行测量获得柱状水蒸气含量。该技术通过获取常数(a和b)的最佳值,在降低模拟误差的同时表征大气水蒸气透过率,从而带来改进和创新,并可能包含有关测量地点温度,气压和湿度垂直剖面的季节性变化的信息。 。最初,原位测量需要在至少一个太阳天顶角范围内与辐射测量同时进行至少1周的可沉淀水含量的独立测量,但还对无法进行独立测量的情况进行了测试。在后者中,该程序开始使用每月可沉淀水含量估算值,该估算值来自相对湿度,压力和温度的地面观测值。使用原位程序获得的可沉淀水含量的时间模式和绝对值与中等分辨率成像光谱辐射仪的检索和探空仪测量值吻合良好,相关系数为0.8-0.9,中位数差异百分比为7%-13%。

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