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Calibration and data elaboration procedure for sky irradiance measurements

机译:天空辐照度测量的校准和数据制作程序

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摘要

The problems encountered in the elaboration of measurements of direct and sky diffuse solar irradiance are the following: (1) to carry out the calibration for the direct irradiance, which consists in determining the direct irradiance at the upper limit of the atmosphere; (2) to carry out the calibration for the diffuse irradiance, which consists in determining the solid viewing angle of the sky radiometer; (3) to determine the input parameters, namely, ground albedo, real and imaginary parts of the aerosol refractive index, and aerosol radius range; and (4) to determine from the optical data the columnar aerosol optical depth and volume radius distribution. With experimental data and numerical simulations a procedure is shown that enables one to carry out the two calibrations needed for the sky radiometer, to determine a best estimate of the input parameters, and, finally, to obtain the average features of the atmospheric aerosols. An interesting finding is that inversion of only data of diffuse irradiance yields the same accuracy of result as data of both diffuse and direct irradiance; in this case, only calibration of the solid viewing angle of the sky radiometer is needed, thus shortening the elaboration procedure. Measurements were carried out in the Western Mediterranean Sea (Italy), in Tokyo (Japan), and in Ushuaia (Tierra del Fuego, Argentina); data were elaborated with a new software package, the Skyrad code, based on an efficient radiative transfer scheme.
机译:在阐述直接和天空漫射太阳辐照度测量时遇到的问题如下:(1)进行直接辐照度的校准,这包括确定大气上限处的直接辐照度; (2)进行漫射辐射的校准,包括确定天空辐射计的固体视角; (3)确定输入参数,即地面反照率,气溶胶折射率的实部和虚部以及气溶胶半径范围; (4)根据光学数据确定柱状气溶胶的光学深度和体积半径分布。借助实验数据和数值模拟,显示了一种程序,该程序使人们能够执行天空辐射计所需的两次校准,以确定输入参数的最佳估计值,最后获得大气气溶胶的平均特征。一个有趣的发现是,仅对漫射辐照度的数据求反可得到与漫射辐照和直接辐照度的数据相同的结果精度。在这种情况下,仅需要校准天空辐射计的固体视角,从而缩短了制作过程。在西地中海(意大利),东京(日本)和乌斯怀亚(阿根廷火地岛)进行了测量;基于有效的辐射传输方案,使用新软件包Skyrad代码对数据进行了详细说明。

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