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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Assessment of the Level-3 MODIS daily aerosol optical depth in the context of surface solar radiation and numerical weather modeling
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Assessment of the Level-3 MODIS daily aerosol optical depth in the context of surface solar radiation and numerical weather modeling

机译:在表面太阳辐射和数值天气模型的背景下评估水平-3 Modis日常气溶胶光学深度

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The daily Level-3 MODIS aerosol optical depth (AOD) product is a global daily spatial aggregation of the Level-2 MODIS AOD (10-km spatial resolution) into a regular grid with a resolution of 1° × 1°. It offers interesting characteristics for surface solar radiation and numerical weather modeling applications. However, most of the validation efforts so far have focused on Level-2 products and only rarely on Level 3. In this contribution, we compare the Level-3 Collection 5.1 MODIS AOD dataset from the Terra satellite available since 2000 against observed daily AOD values at 550 nm from more than 500 AERONET ground stations around the globe. Overall, the mean error of the dataset is 0.03 (17%, relative to the mean ground-observed AOD), with a root mean square error of 0.14 (73%, relative to the same), but these errors are also found highly dependent on geographical region. We propose new functions for the expected error of the Level-3 AOD, as well as for both its mean error and its standard deviation. Additionally, we investigate the role of pixel count vis-à-vis the reliability of the AOD estimates, and also explore to what extent the spatial aggregation from Level 2 to Level 3 influences the total uncertainty in the Level-3 AOD. Finally, we use a radiative transfer model to investigate how the Level-3 AOD uncertainty propagates into the calculated direct normal and global horizontal irradiances.
机译:每日水平-3 MODIS气溶胶光学深度(AOD)产品是DEPLE-2 MODIS AOD(10公里空间分辨率)的全球日间空间聚集到常规网格中,分辨率为1°×1°。它为表面太阳辐射和数值天气建模应用提供了有趣的特性。但是,到目前为止,大多数验证努力都集中在第2级产品上,只有很少在3级。在这一贡献中,我们比较自2000年以来的Terra Satellite的第3级Collect 5.1 Modis Aod数据集反对观测的日常AOD值。在全球各地的500多个AeroNet地面站550nm。总的来说,数据集的平均误差是0.03(相对于平均接地AOD)的0.03(17%),具有0.14(相对于相同)0.14(73%)的根均方误差,但这些误差也高度依赖在地理区域。我们为Level-3 Aod的预期误差提出了新的功能,以及其平均误差及其标准差。此外,我们研究了像素计数Vis-is-Vis的角色AOD估计的可靠性,并且还探讨了从2级到级别3的空间聚合的程度影响了水平-3 AOD中的总不确定性。最后,我们使用辐射传输模型来研究水平-3 AOD不确定性如何传播到计算的直接正常和全球水平辐射。

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