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首页> 外文期刊>International journal of remote sensing >Evidence of azimuthal anisotropy for the thermal infrared radiation leaving the Earth's atmosphere
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Evidence of azimuthal anisotropy for the thermal infrared radiation leaving the Earth's atmosphere

机译:离开地球大气层的热红外辐射的方位各向异性的证据

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摘要

The analysis of one year of Cloud and the Earth's Radiant Energy System (CERES) data from the Earth Observation System (EOS)-Terra satellite provides evidence that the longwave radiation escaping from the atmosphere exhibits significant variability according to the azimuthal angle of observation. A regional analysis of this variability shows that the anisotropy in azimuth is maximum over mountain and desert areas and under cloud-free conditions. A relative difference between north and south views of about 5% in annual average is observed over the Himalayan region in the 8-14 μm infrared (IR) window. The remote sensing community should be aware of this variability, in particular when analysing IR data provided by instruments on geostationary orbits. Indeed, in this case, the azimuthal anisotropy may lead to systematic overestimation of the outgoing longwave radiation and to biases on estimated quantities such as the surface temperature.
机译:对一年的云和来自地球观测系统(EOS)-Terra卫星的地球辐射能系统(CERES)数据的分析提供了证据,表明从大气中逸出的长波辐射根据观测的方位角表现出显着的可变性。对这种变异性的区域分析表明,在山区和沙漠地区以及无云条件下,方位角的各向异性最大。在8-14μm红外(IR)窗口中,在喜马拉雅地区观察到的南北视野之间的年平均相对差异约为5%。遥感界应意识到这一变化,特别是在分析地球静止轨道上的仪器提供的红外数据时。实际上,在这种情况下,方位各向异性可能导致对出射的长波辐射的系统过高估计,并导致估计量(例如表面温度)出现偏差。

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