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Dust Aerosol Retrieval Over the Oceans With the MODIS/VIIRS Dark Target Algorithm: 2. Nonspherical Dust Model

机译:用MODIS / VIIRS暗目标算法在海洋上检索灰尘气溶胶:2.非球形粉尘模型

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The Dark‐target (DT) aerosol algorithm retrieves spectral Aerosol Optical Depth (AOD) and other aerosol properties from Moderate‐resolution Imaging Spectrometer (MODIS) reflectance observations. Over the ocean, the DT algorithm is known to contain scattering‐angle‐dependent biases in its retrievals of AOD, Angstrom Exponent (AE), and Fine Mode Fraction (FMF) for dust aerosols. Following a two‐step strategy to improve the DT retrieval of dust over ocean, for which the first step is to identify dusty pixels (reported in “Part 1”), in this “Part 2,” we report on construction of a new dust model lookup table (LUT) and the strategy for applying it within the existing DT algorithm. In particular, we evaluate different characterizations of dust optical properties from a variety of frameworks and databases, and compare them with the current DT retrieval assumptions. Substituting the standard operational LUT with a spheroid dust model with identified dusty pixels shows significant improvement when compared with collocated AERONET‐identified dusty pixels. Specifically, the application of the new dust model to dusty pixels reduces their AOD bias from 0.06 to 0.02 while improving the fraction of retrievals within expected error from 64% to 82%. At the same time, the overall bias in AE is reduced from 0.13 to 0.06, and the scattering‐angle‐dependent AE bias is largely eliminated. In testing on two full months of data (April and July), the new retrieval will reduce the monthly mean AOD by up to 0.1 and 0.2 in the north Atlantic and Arabian seas, respectively. The average AE and FMF are also reduced in these dust heavy regions.
机译:黑暗目标(DT)气溶胶算法检测光谱气雾光学深度(AOD)和其他气溶胶特性,以及中等分辨率成像光谱仪(MODIS)反射率观察。在海洋上,已知DT算法在其检索AOD,Ang代表(AE)和微量模式分数(FMF)中包含散射角依赖性偏差,用于灰尘气溶胶。在改善海洋中改善DT检索的两步策略之后,第一步是识别尘土飞扬的像素(在第1部分“)中,在这个”第2部分“中,我们报告了新灰尘的构建模型查找表(LUT)和将其应用于现有DT算法中的策略。特别是,我们评估来自各种框架和数据库的灰尘光学特性的不同特征,并将它们与当前的DT检索假设进行比较。与具有鉴定的尘土飞扬像素的球形粉尘模型用标准操作LUT用型球体粉尘模型表示显着的改善,与并联机会鉴定的粉尘像素相比。具体而言,将新的粉尘模型应用于尘土飞扬的像素,从0.06到0.02减少了它们的AOD偏差,同时将预期误差的检索分数从64%提高至82%。同时,AE中的整体偏压从0.13减小到0.06,并且大量消除了散射角依赖性的AE偏压。在测试两个全月份数据(4月和7月)时,新的检索将分别将每月平均AOD减少到北大西洋和阿拉伯海中的0.1%和0.2。在这些灰尘重的区域中也减少了平均值和FMF。

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