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MODIS 4 µm radiance in global megacities depends on seasonality, land cover, and view zenith angle

机译:全球大城市的MODIS 4 µm辐射取决于季节,土地覆盖和天顶角度

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We explored variation in 4 μm radiance in and nearby eight global megacities using MODIS band 23 calibrated radiance. We found the linkage between MIR radiance seasonality and seasonal pattern of insolation, especially stronger/pronounced at higher latitude than at tropics zones. The meteorological parameter - precipitation was identified as an impact factor of MIR radiance attenuation. Similarity of MIR radiance from desert, bare soil areas, or areas with a little of crop cover to MIR radiance from urban areas makes the distinction of cover using only MIR information even impossible during the time when insolation is the highest. Also, the seasonal variations of MIR radiance are being affected by the heterogeneity of cover as different types of building and construction materials, and urban green spaces. Conceivably, additional data and MIR radiance with higher spatial resolution improve and refine/detail information about MIR radiance behavior for further investigation.
机译:我们使用MODIS band 23校准辐射,探索了附近8个全球特大城市中4μm辐射的变化。我们发现,MIR辐射度的季节性与日照的季节性模式之间存在关联,特别是在纬度比热带地区强/读音强的地区。气象参数-降水被确定为MIR辐射衰减的影响因素。沙漠,裸露的土壤或作物覆盖很少的地区的MIR辐射与城市地区的MIR辐射相似,因此即使在日照最高的时候也无法仅使用MIR信息来区分覆盖。此外,由于不同类型的建筑和建筑材料以及城市绿地的覆盖物的异质性,MIR辐射的季节性变化也受到影响。可以想象,具有更高空间分辨率的其他数据和MIR辐射会改善和完善/详细有关MIR辐射行为的信息,以供进一步研究。

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