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Controlling factors analysis for the Himawari-8 aerosol optical depth accuracy from the standpoint of size distribution, solar zenith angles and scattering angles

机译:从尺寸分布,太阳能天性角度和散射角度的观点来控制Himawari-8气溶胶光学深度精度的因素分析

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This work aims at providing a novel controlling factors analysis for the Advanced Himawari Imager (AHI) AOD retrieval from the aspect of particle size distribution and Sun-Earth-Satellite geometries, through combining the high quality ground-based observation in Wuhan. The three-years co-located AOD dataset of AHI and sun-photometer in Wuhan are used to support this work. AHI overall underestimates AOD over Wuhan site with coefficient of determination (R-2) equal 0.7. Though the best retrieval appeared in summer, underestimation is found to be persistent in each season. Combining with the characteristics of aerosol hygroscopic growth in Wuhan, we found the fine-mode particle median radius which supposed by AHI is lower than the in-site measurement. This leads to the overestimation of back scattering by aerosol particles, and induces underestimation of AOD consequently. The correlation and bias analyses of AOD with respect to the variation of Solar Zenith Angle and scattering angles are also performed. Phase function derived by sun-photometer is applied to discuss the influence of scattering angle on AOD inversion. Accompany with the scattering angle, the AOD retrieval bias consistently varies with the phase function bias, which further confirm the impact of phase function on AHI retrieval. Finally, the dark target method was applied to retrieve AHI AOD. The comparison results show that dark target overestimated AOD and performed worse in Wuhan. It could reveals that AHI aerosol retrieval method has some advantages in heavy aerosol loading places without enough prior information of aerosol properties.
机译:这项工作旨在通过组合武汉的高质量地面观测,为从粒度分布和太阳地球卫星几何形状的方面提供新的控制因素分析,从而从粒度分布和太阳卫星 - 卫星几何形状的方面。武汉的AHI和Sun-Photometer的三年间Aod Dataset用于支持这项工作。 AHI整体低估了武汉站点的AOD,测定系数(R-2)等于0.7。虽然夏天出现了最好的检索,但每个赛季都发现低估了持久性。结合武汉气溶胶吸湿生长的特点,我们发现所谓的AHI的微型颗粒中值半径低于现场测量。这导致气溶胶颗粒的背部散射高估,并因此诱导低估AOD。还执行了AOD相对于太阳能天顶角和散射角度的变化的相关性和偏置分析。通过太阳光度计衍生的相位函数探讨散射角对AOD反转的影响。伴随着散射角度,AOD检索偏差始终如一地随相位函数偏置而变化,这进一步证实了相位函数对AHI检索的影响。最后,应用了暗目标方法来检索AHI AOD。比较结果表明,黑暗的目标高估AOD并在武汉进行更糟。它可以揭示AHI气溶胶检索方法在重型气溶胶加载位置具有一些优点,而无需足够的气溶胶特性信息。

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