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A 3-D polarized reversed Monte Carlo radiative transfer model for Millimeter and submillimeter passive remote sensing in cloudy atmospheres

机译:多云大气中毫米和亚毫米被动遥感的3-D极化反向蒙特卡罗辐射传递模型

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This paper introduces a three-dimensional (3-D) polarized radiative transfer model that has been developed to assess the influence of cirrus clouds on radiances measured by the Earth Observing System Microwave Limb Sounder (EOS-MLS) instrument. EOS-MLS is on the Aura satellite, which launched in July 2004. The radiative transfer model uses a reversed Monte Carlo algorithm and has been incorporated in the Atmospheric Radiative Transfer Simulator 1.1.x software package. The model will be used to study aspects of the scattering problem that are not considered in the existing operational EOS-MLS cloudy-sky forward model, including the influence of nonspherical, oriented hydrometeors, and 3-D inhomogeneous cloud structure. This paper presents the radiative transfer algorithm and example model results, which demonstrate significant 3-D and polarization effects. Although the development of this model was motivated by the EOS-MLS mission, it is also directly applicable to ground-based and down-looking geometries.
机译:本文介绍了三维(3-D)极化辐射传输模型,该模型已开发用于评估卷云对通过地球观测系统微波肢体测深仪(EOS-MLS)仪器测量的辐射率的影响。 EOS-MLS在2004年7月发射的Aura卫星上。辐射传输模型使用反向蒙特卡洛算法,并已包含在“大气辐射传输模拟器1.1.x”软件包中。该模型将用于研究现有EOS-MLS多云天空正向模型中未考虑的散射问题的各个方面,包括非球形,定向水凝物和3-D非均匀云结构的影响。本文介绍了辐射转移算法和示例模型结果,这些结果证明了显着的3-D和极化效应。尽管此模型的开发是由EOS-MLS任务推动的,但它也直接适用于基于地面和向下看的几何形状。

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