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Analysis of the application of the optical method to the measurements of the water vapor content in the atmosphere – Part 1: Basic concepts of the measurement technique

机译:光学方法在大气中水蒸气含量测量的应用 - 第1部分:测量技术的基本概念

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We retrieved the total content of the atmospheric water vapor (or Integrated Water Vapor, IWV) from extensive sets of photometric data obtained since 1995 at Lindenberg Meteorological Observatory with star and sun photometers. Different methods of determination of the empirical parameters that are necessary for the retrieval are discussed. The instruments were independently calibrated using laboratory measurements made at Pulkovo Observatory with the VKM-100 multi-pass vacuum cell. The empirical parameters were also calculated by the simulation of the atmospheric absorption by water vapor, using the MODRAN-4 program package for different model atmospheres. The results are compared to those presented in the literature, obtained with different instruments and methods of the retrieval. The reliability of the empirical parameters, used for the power approximation that links the water vapor content with the observed absorption, is analyzed. Currently, the total (from measurements, calibration, and calculations) errors yield the standard uncertainty of about 10 % in the total column water vapor. We discuss the possibilities for improving the accuracy of calibration to ~1 % as indispensable condition in order to make it possible to use data obtained by optical photometry as an independent reference for other methods (GPS, MW-radiometers, lidar, etc).
机译:我们从1995年以来在Lindenberg气象天文台获得的广泛的光度测量数据中检索了大气水蒸气(或综合水蒸气,IWV)的总含量,该数据在Lindenberg气象学天文台与明星和太阳光度计。讨论了确定检索所必需的经验参数的不同方法。使用VKM-100多通真空电池在Pulkovo天文台进行的实验室测量来独立地校准该仪器。还通过用于不同模型气氛的Modran-4程序包来模拟水蒸气的大气吸收来计算经验参数。将结果与文献中提出的那些相比,用不同的仪器和检索方法获得。分析了用于将水蒸气含量与观察到的吸收链接的功率近似的经验参数的可靠性。目前,总(从测量,校准和计算)误差产生总柱水蒸气中约10%的标准不确定性。我们讨论将校准精度提高到〜1%的校准精度,以便使用光学光度法获得的数据作为其他方法(GPS,MW-辐射仪,LIDAR等)的独立参考。

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