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Ozone Monitoring Instrument satellite UV irradiance product correction using a global aerosol climatology

机译:使用全球气溶胶气候学校正臭氧监测仪卫星紫外线辐射产品

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Lately a number of studies related with UV irradiance estimates from satellite data based on the Ozone Monitoring Instrument (OMI) have shown a high correlation with ground-based measurements but a positive bias in many locations, the satellite derived UV being higher. One of the key factors that this bias has been attributed to is the boundary layer aerosol absorption not taken into account in the current OMI UV algorithm. In this work we have used a correction procedure based on climatological global aerosol absorption data taken from AeroComm aerosol initiative. This dataset includes aerosol optical depth and aerosol single scattering albedo assembled by combining, ground-based aerosol measurements from AERONET and information from several global aerosol models. The results of this correction were compared with synchronous ground-based measurements from 9 UV monitoring stations. The results generally showed a significantly reduced bias of 7-20%, a lower variability, and an unchanged, high correlation coefficient.
机译:最近,许多与基于臭氧监测仪器(OMI)的卫星数据得出的紫外线辐照度估计有关的研究表明,它们与基于地面的测量高度相关,但在许多地方都存在正偏差,而卫星产生的紫外线更高。造成这种偏差的关键因素之一是当前OMI UV算法未考虑边界层气溶胶吸收。在这项工作中,我们使用了基于AeroComm气溶胶计划的全球气候气溶胶吸收数据的校正程序。该数据集包括通过组合来自AERONET的地面气溶胶测量值和来自多个全球气溶胶模型的信息而组合而成的气溶胶光学深度和气溶胶单散射反照率。将该校正结果与来自9个紫外线监测站的同步地面测量结果进行了比较。结果通常显示偏差显着降低了7-20%,变异性较低,并且相关系数不变。

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