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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Evaluation of Moderate-Resolution Imaging Spectroradiometer (MODIS) Collection 004 (C004) aerosol retrievals at Kanpur, Indo-Gangetic Basin
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Evaluation of Moderate-Resolution Imaging Spectroradiometer (MODIS) Collection 004 (C004) aerosol retrievals at Kanpur, Indo-Gangetic Basin

机译:在印度恒河盆地坎普尔对中分辨率成像光谱仪(MODIS)004(C004)气溶胶回收进行评估

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摘要

We have compared the spectral aerosol optical depth (AOD, τλ) and aerosol fine mode fraction (AFMF) of Collection 004 (C004) derived from Moderate-Resolution Imaging Spectroradiometer (MODIS) on board National Aeronautics and Space Administration's (NASA) Terra and Aqua platforms with that obtained from Aerosol Robotic Network (AERONET) at Kanpur (26.45°N, 80.35°E), India for the period 2001–2005. The spatially-averaged (0.5° × 0.5° centered at AERONET sunphotometer) MODIS Level-2 aerosol parameters (10 km at nadir) were compared with the temporally averaged AERONET-measured AOD (within ± 30 minutes of MODIS overpass). We found that MODIS systematically overestimated AOD during the pre-monsoon season (March to June, known to be influenced by dust aerosols). The errors in AOD at 0.66 μm were correlated with the apparent reflectance at 2.1 μm (ρ~*_(2.1)) which MODIS C004 uses to estimate the surface reflectance in the visible channels (ρ 0.47 = ρ~*_(2.1)/4, ρ 0.66 = ρ~*_(2.1)/2). The large errors in AOD (Δτ 0.66 > 0.3) are found to be associated with the higher values of ρ~*_(2.1) (0.18 to 0.25), where the uncertainty in the ratios of reflectance is large (Δρ 0.66 ± 0.04, Δρ 0.47 ± 0.02). This could have resulted in lower surface reflectance, higher aerosol path radiance and thus lead to overestimation in AOD. While MODIS-derived AFMF has binary distribution (1 or 0) with too low (AFMF < 0.2) during dust-loading period, and ~1 for the rest of the retrievals, AERONET showed range of values (0.4 to 0.9). The errors in τ 0.66 were also high in the scattering angle range 110°–140°, where the optical effects of nonspherical dust particles are different from that of spherical particles.
机译:我们在国家航空和航天局(NASA)Terra和Aqua上比较了中分辨率成像光谱仪(MODIS)衍生的004(C004)的光谱气溶胶光学深度(AOD,τλ)和气溶胶精细模式分数(AFMF)平台从2001-2005年期间从印度坎普尔(26.45°N,80.35°E)的Aerosol机器人网络(AERONET)获得。将空间平均(0.5°×0.5°,以AERONET太阳光度计为中心)的MODIS Level-2气溶胶参数(最低点为10 km)与时间平均的AERONET测量的AOD(在MODIS立交的±30分钟内)进行了比较。我们发现,MODIS在季风前季节(3月至6月,已知受粉尘气溶胶的影响)期间系统地高估了AOD。 AOD误差为0.66μm时与2.1μm时的表观反射率(ρ〜* _(2.1))相关,MODIS C004用来估计可见光通道中的表面反射率(ρ0.47 =ρ〜* _(2.1)/ 4,ρ0.66 =ρ〜* _(2.1)/ 2)。发现AOD的较大误差(Δτ0.66> 0.3)与较高的ρ〜* _(2.1)(0.18至0.25)值相关,其中反射比的不确定性较大(Δρ0.66±0.04, Δρ0.47±0.02)。这可能导致较低的表面反射率,较高的气溶胶路径辐射率,从而导致AOD的高估。尽管MODIS派生的AFMF具有二元分布(1或0),在粉尘加载期间过低(AFMF <0.2),而其余的取值则为〜1,而AERONET的取值范围为0.4至0.9。在散射角范围为110°–140°时,τ0.66的误差也很高,其中非球形尘埃颗粒的光学效应不同于球形尘埃的光学效应。

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