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Comparison of aerosol optical depth from satellite (MODIS), Sun photometer and pyrheliometer ground-based measurements in Cuba

机译:来自古巴的气溶胶光学深度比较(MODIS),太阳光度计和日射强度计地面测量

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摘要

In the present study, we report the first comparison of the aerosol properties measured with sun photometer at Camagüey, Cuba, with the MODerate resolution Imaging Spectroradiometer (MODIS) instruments on Terra and Aqua satellites. We compared the aerosol optical depth at 550 nm (AOD) and the Ångström Exponent (AE) from the sun photometer for the period 2008 to 2014 with the same variables measured by both MODIS instruments, that are spatially and temporally coincident. The comparison includes AOD derived with both Deep Blue (DB) and Dark Target (DT) algorithms from MODIS Collection 6. The AOD derived with DT algorithm for Terra and Aqua agrees better with AOD from the sun photometer than the AOD derived with DB. Additionally there is little difference between AOD from both satellite instruments, when they are compared with sun photometer AOD, allowing to combine AOD from Terra and Aqua for more comprehensive climatological statistics. The comparison of the AE showed similar results with reports in the literature about the little skills of the current DT and DB algorithms for its retrieval. In addition, we report the comparison of the broadband AOD (BAOD) from pyrheliometer measurements located at Camagüey site and other three meteorological stations along Cuba, with AOD measurements from the sun photometer and from MODIS onboard Terra and Aqua. The comparison of the BAOD from the four sites as a whole with coincident AOD from MODIS onboard Terra and Aqua showed similar results than the ones of the comparison between the sun photometer AOD and the AOD from the two satellite instruments. In the comparison between the BAOD and the AOD at each one of the eight individual sun photometer wavelengths, the results improve in the spectral range 400 to 675 nm, with the best result at 500 nm. The BAOD typical uncertainty ranges from 0.04 to 0.06 at this band. The results from the BAOD comparisons demonstrate its reliability for characterizing AOD at sites with no sun photometer and for extending backward in time AOD estimates.
机译:在本研究中,我们报告了在古巴Camagüey用日光光度计测量的气溶胶特性与Terra和Aqua卫星上的中等分辨率成像光谱仪(MODIS)进行的首次比较。我们将2008年至2014年期间太阳光度计的550 opticalnm气溶胶光学深度(AOD)和Ångström指数(AE)与两个MODIS仪器测量的相同变量进行了比较,这些变量在空间和时间上是一致的。比较包括来自MODIS Collection 6的深蓝色(DB)和暗目标(DT)算法得出的AOD。针对terra和Aqua的DT算法得出的AOD与来自太阳光度计的AOD相比,与DB得出的AOD更好。此外,将两种卫星仪器的AOD与太阳光度计AOD进行比较时,两者之间几乎没有差异,从而可以将Terra和Aqua的AOD结合起来以获得更全面的气候统计数据。 AE的比较与文献中有关当前DT和DB算法检索的小技巧的报告显示了相似的结果。此外,我们报告了位于Camagüey站点和古巴沿岸其他三个气象站的高温计的宽带AOD(BAOD)与太阳光度计以及Terra和Aqua机载MODIS的AOD的比较。四个地点的BAOD值与Terra和Aqua上MODIS的AOD值相吻合的结果显示,与太阳光度计AOD和两个卫星仪器的AOD值相比,结果相似。在八个单独的太阳光度计波长中的每个波长处,BAOD和AOD的比较中,在400至675 nm的光谱范围内,结果都得到了改善,最好的结果是在500 thenm处。在该频段,BAOD的典型不确定度范围为0.04至0.06。 BAOD比较的结果证明了它在没有日光光度计的位置上表征AOD的可靠性以及向后扩展AOD估算的可靠性。

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