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The Certification and Comparison of the GOCI Aerosol Optical Thickness Products-A Case Study of Tianjin 8.12

机译:Goci气溶胶光学厚度产品的认证与比较 - 以天津8.12为例

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COMSGOCI (Geostationary Ocean Color Imager) is the first geostationary ocean color satellite in the world launched by South Korea in June 2010, which includes eight bands from the visible to the infrared band. GOCI aerosol optical thickness (AOT) at 555nm was retrieved by atmospheric radiative transfer model based on two-stream approximation algorithm. Due to GOCI without near infrared band and has a high solar elevation angle, solar zenith angle must be recalibrated to solve the earth system albedo, and the surface reflectance solved by quack atmospheric correction and recalculated backward scatter coefficient. Evaluation of GOCIAOT with AERONET measurements showed that the average error becomes 0.107 from the original 0.393, that means GOCI aerosol optical thickness can be more accurately with the advanced two-stream approximation. Taking the eastern China in 3 and 4 December 2013 for example, comparing the GOCIVAOT at 555nm, MODISAOT retrievals at 550nm, NPPAOT at 550nm and AERONET data products indicated that: take the AERONET data as reference, the error of three kinds of satellite data can be ordered as following: MODISAOT> GOCIAOT> NPPAOT and the GOCI-MODIS shows a bias of 0.02917 with the GOCI-NPP. GOCIAOT is 0.05714 generally bigger than that of MODISAOT. NPP-GOCI deviation is 0.10253. The deficiency of MODIS is its low spatial resolution and the high concentration of AOT will be mistaken for a cloud area. However, GOCI can well reflect the concentration and distribution of aerosols. Therefore, GOGI can provide real-time dynamic monitoring on China Eastern atmospheric environment and the accurate time event information of haze for each process can be obtained. Finally, applied GOCI to the "8.12 Tianjin bombings" and to monitor the migration and dispersion of pollutant.
机译:COMS Goci(地球静止海洋彩色成像仪)是2010年6月由韩国推出的世界上第一款地球静止海洋卫星,其中包括来自红外乐队可见的八个频段。基于两流近似算法的大气辐射传输模型,检索555nm处的Goci气溶胶光学厚度(AOT)。由于GOCI而不近红外波段,并且具有高太阳高度角,太阳天顶角必须重新校准来解决地球系统反照率,和表面反射率解决了嘎嘎大气校正和重新计算后向散射系数。 GOCI AOT与AERONET测量的评估表明,平均误差从原始0.393变为0.107,这意味着GOCI气溶胶光学厚度可以更准确地利用先进的双流近似。在2013年12月3日和4日以550nm的555纳米的摩西 aot检索比较了中国,拿550nm和aeroNet数据产品的比较,表明:将机动仪数据作为参考,三种误差卫星数据可以订购如下:Modis AOT> Goci AOT> NPP AOT和Goci-Modis显示了Goci-NPP的偏差为0.02917。 Goci AOT通常比Modis Aot大的0.05714。 NPP-GOCI偏差为0.10253。 MODIS的缺陷是其低空间分辨率,并且高浓度的AOT将被误认为是云区域。然而,Goci可以很好地反映气溶胶的浓度和分布。因此,Gogi可以提供对中国东部大气环境的实时动态监测,并且可以获得每个过程的雾度的准确时间事件信息。最后,将Goci应用于“8.12天津轰炸”并监测污染物的迁移和分散。

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