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Intercomparison of solar UV direct irradiance spectral measurements at Izana in June 2005

机译:2005年6月Izana的太阳能UV直接辐照度谱测量的相互熟练

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Spectral measurements of direct solar ultraviolet irradiance are very important for many applications in the field of atmospheric sciences. Despite its usefulness, few UV monitoring sites include such measurements in their regular observational programs. Standardization of measurement methodologies and calibration techniques is required in order to reach the quality standard of global irradiance measurements. This study presents preliminary results from an intercomparison campaign of seven UV spectroradiometers of different types that took place at the high altitude site of Izana (28.3°N, 16.5°W, 2367 m above sea level), in Tenerife, Canary Islands in June 2005. The campaign is focused primarily on spectral measurements of direct solar irradiance. Among the objectives is to improve the quality of direct solar irradiance spectral measurements, through instrumental modifications and standardization of calibration techniques, as well as to assess the significance of the differences in the field of view of the spectroradiometers with respect to aerosols and to solar zenith angle. Under the low aerosol conditions prevailing during this campaign, we aimed to establish the differences among the various instruments under "ideal" conditions. Moreover, continuous measurements under stable total ozone and aerosol optical depth will be used to determine the extraterrestrial solar flux, through the application of the Langley extrapolation method. A first comparison of sky radiance measurements of the zenith light and of various directions on the sky show effects of sensitivity to polarization of one type of instruments and the variability of the provisional radiance calibration of 4 instruments.
机译:直接太阳紫外线辐照度的光谱测量对于大气科学领域的许多应用非常重要。尽管有其有用,但很少有紫外线监测网站在其常规观察计划中包括此类测量。需要测量方法和校准技术的标准化,以达到全球辐照度测量的质量标准。本研究提出了七种UV分光剂仪的初步结果,其不同类型的不同类型的不同类型(28.3°N,16.5°W,海拔2367米),在2005年的特内里费岛,加那利群岛。该活动主要专注于直接太阳辐照度的光谱测量。在目的之外,通过仪器修改和标准化来提高直接太阳辐照度谱测量的质量,以及评估光谱仪视野中的差异相对于气溶胶和太阳能天顶的显着性角度。在此次活动期间普遍存在的低气溶胶条件下,我们旨在在“理想”条件下建立各种文书之间的差异。此外,通过在兰利外推方法的应用中,将使用稳定总臭氧和气溶胶光学深度下的连续测量来确定外星性太阳能通量。天空灯和天空中各种方向的天空光线测量的第一次比较显示了一种敏感性对一种类型的仪器极化的影响以及4个仪器的临时辐射校准的可变性。

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