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Evaluation of JAXA Himawari-8-AHI Level-3 Aerosol Products over Eastern China

机译:中国东部地区JAXA Himawari-8-AHI Level-3气雾剂产品评估

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A novel geostationary satellite, the H8/AHI (Himawari-8/Advanced Himawari Imager), greatly improved the scan times per day covering East Asia, and the operational products have been stably provided for a period of time. Currently, atmospheric aerosol pollution is a major concern in China. H8/AHI aerosol products with a high temporal resolution are helpful for real-time monitoring of subtle aerosol variation. However, the H8/AHI aerosol optical thickness (AOT) product has been updated three times since its launch, and the evaluation of this dataset is currently rare. In order to validate its accuracy, this study compared the H8/AHI Level-3 (L3) hourly AOT products of all versions with measurements obtained from eleven sunphotometer sites located in eastern China from 2015 to 2018. Moderate Resolution Imaging Spectroradiometer (MODIS) Collection 6 AOT products from the same period were also used for inter-comparison. Although the H8/AHI AOT retrievals in version 010 show a moderate agreement with ground-based observations (correlation coefficient (R): 0.66–0.85), and the time series analysis shows that it can effectively monitor hourly variation, it suffers from an obvious underestimation of 0.3 compared to ground-based and MODIS observations. After the retrieval algorithm updated the predefined aerosol model, the overall underestimation of AHI AOTs was solved (version 010 slope: 0.43–0.62, version 030 slope: 0.75–1.02), and the AOTs in version 030 show a high agreement with observations from ten sites (R: 0.73–0.91). In addition, the surface reflectance dataset derived from the minimum reflectivity model in version 010 is inaccurate in parts of eastern China, for both “bright” and “dark” land surfaces, which leads to the overestimation of the AOT values under low aerosol loads at the Beijing and Xianghe sites. After the update of the surface dataset in version 030, this phenomenon was alleviated, resulting in no significant difference in scatterplots under different surface conditions. The AOTs of H8/AHI version 030 show a significant improvement compared to the previous two versions, but the spatial distribution of AHI is still different from MODIS AOT products due to the differences in sensors and algorithms. Therefore, although the evaluation in this study demonstrates the effectiveness of H8/AHI AOT products for aerosol monitoring at fine temporal resolutions, the performance of H8/AHI AOT products needs further study by considering more conditions.
机译:新型对地静止卫星H8 / AHI(Himawari-8 /先进的Himawari成像仪)极大地改善了每天覆盖东亚的扫描时间,并且在一段时间内稳定地提供了作战产品。当前,大气气溶胶污染是中国的主要关注点。 H8 / AHI气溶胶产品具有较高的时间分辨率,有助于实时监测细微的气溶胶变化。但是,自推出以来,H8 / AHI气溶胶光学厚度(AOT)产品已进行了三次更新,并且目前很少对此数据集进行评估。为了验证其准确性,本研究将所有版本的H8 / AHI Level-3(L3)每小时AOT产品与2015年至2018年从位于中国东部的11个日光光度计站点获得的测量值进行了比较。中分辨率成像光谱仪(MODIS)集合同期还使用了6种AOT产品进行比对。尽管010版的H8 / AHI AOT检索结果与地面观测值具有适度的一致性(相关系数(R):0.66-0.85),并且时间序列分析表明它可以有效地监测每小时的变化,但它受到明显的影响。与地面观测和MODIS观测相比,低估了0.3。在检索算法更新了预定义的气溶胶模型后,解决了AHI AOT的整体低估问题(版本010斜率:0.43-0.62,版本030斜率:0.75-1.02),而版本030的AOT与来自十个观测站的观测结果高度吻合网站(R:0.73-0.91)。此外,从010版最小反射率模型得出的表面反射率数据集在中国东部的部分地区不准确,无论是“亮”还是“暗”的陆地表面,都导致在低气溶胶负荷下高估了AOT值。北京和香河遗址。在版本030中更新表面数据集后,此现象得到缓解,导致在不同表面条件下散点图没有显着差异。 H8 / AHI 030版的AOT与前两个版本相比显示出显着改进,但是由于传感器和算法的差异,AHI的空间分布仍与MODIS AOT产品不同。因此,尽管本研究中的评估证明了H8 / AHI AOT产品在精细的时间分辨率下用于气溶胶监测的有效性,但仍需要通过考虑更多条件来进一步研究H8 / AHI AOT产品的性能。

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