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Multi-scale aerosol retrieval over land from satellite data and its application on haze monitoring

机译:利用卫星数据在陆地上进行多尺度气溶胶反演及其在雾霾监测中的应用

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In recent years the satellite monitoring capabilities in particular to derive maps of aerosol optical depth (AOD) have increased tremendously. There are many aerosol retrieval algorithms for different satellites and sensors. In 2005, a new algorithm for AOD retrieval by synergetic use of of Terra and Aqua MODIS data (SYNTAM) was proposed by Tang et al. With this algorithm, surface reflectance and AOD can be simultaneously retrieved. Now we attempt to provide multi-scale AOD, using SYNTAM algorithm. We calculated AODs at 10km, 1km, 500m and 100m spatial resolution from MODIS and HJ-1A/1B CCD (the China HJ-1A/1B of the Environment and Disasters Monitoring Microsatellite Constellation Charge-Coupled Device) data over East China on June 25, 2009. The retrieval results were compared to the result of ground-based aerosol measurements by CE318 automatic sun tracking photometer at the AErosol RObotic NETwork (AERONET) sites. The validation results show that the results retrieved by SYNTAM have good precision.
机译:近年来,特别是用于导出气溶胶光学深度图(AOD)的卫星监视功能已大大提高。有许多针对不同卫星和传感器的气溶胶检索算法。在2005年,Tang等人提出了一种协同使用Terra和Aqua MODIS数据(SYNTAM)进行AOD检索的新算法。使用此算法,可以同时获取表面反射率和AOD。现在,我们尝试使用SYNTAM算法提供多尺度AOD。我们于6月25日通过MODIS和HJ-1A / 1B CCD(中国环境与灾害监测微卫星星座电荷耦合设备的HJ-1A / 1B)数据计算了10km,1km,500m和100m空间分辨率的AOD。 ,2009年。在AErosol机器人网络(AERONET)站点上,将检索结果与CE318自动太阳跟踪光度计对地面气溶胶测量结果进行了比较。验证结果表明,SYNTAM提取的结果具有较高的精度。

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