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Satellite ocean color observation with 250 m spatial resolution using ADEOS-II GLI

机译:使用Adeos-II Gli使用250米的空间分辨率卫星海洋颜色观察

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Ocean color products (aerosol, normalized water-leaving radiance, and chlorophyll-a concentration) were produced using 250-m resolution data (center wavelengths at 462, 543, 661, 824, 1645, and 2194nm) of Global Imager (GLI) on ADEOS-II by GLI standard ocean atmospheric correction algorithms (i.e., basically same as the 1-km algorithm). The 250-m ocean color products can show finer spatial structures than standard lkm products, but we found some problems; (a) there is large noise because GLI 250-m channels were designed originally for bright area (land vegetation), (b) we have to use channels which are not optimized for the atmospheric correction (wide bandwidth, large noise, and including slight water-vapor absorption), and (c) we need more consideration about cloud shadow, sea-surface reflectance (sunglint and white cap), and shallow bottom. Sea surface reflectance has fine spatial structures in the actual ocean due to fine structure of surface winds influenced by the coastal topography, and we often cannot distinguish the surface reflection from aerosol scattering above the sea surface. JAXA is planning a new mission, "Second generation GLI (SGLI) on GCOM satellites", which has visible and near-infrared channels with 250-m spatial resolution improving noise level and bandwidth applicable to the coastal ocean-color observations.
机译:使用250米的分辨率数据(462,543,661,824,1645和2194nm)的250 m分辨率数据(中心波长)产生海洋颜色产品(气溶胶,归一化的留下辐射辐射和叶绿素-A浓度)全球成像仪(GLI) ADEOS-II由GLI标准海洋大气校正算法(即,与1公里算法基本相同)。 250米的海洋颜色产品可以显示比标准LKM产品更精细的空间结构,但我们发现了一些问题; (a)噪音很大,因为GLI 250-M通道最初是为明亮区域(土地植被),(b)我们必须使用不优化的通道(宽带宽,大噪音,包括轻微水蒸气吸收),和(c)我们需要更多关于云阴影,海面反射(Sunglint和White Cap)和浅底的考虑。由于受沿海地形影响的表面风的精细结构,海面反射率在实际海洋中具有精细的空间结构,我们常常无法区分从海面上方的气溶胶散射的表面反射。 JAXA计划了一个新的任务,“GCOM卫星的第二代GLI(SGLI)”,它具有可见光和近红外通道,具有250米的空间分辨率,提高适用于沿海海洋颜色观测的噪音水平和带宽。

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