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Technical Note: A new discrete ordinate first-order rotational Raman scattering radiative transfer model - implementation and first results

机译:技术说明:一种新的离散纵坐标一阶旋转拉曼散射辐射传递模型-实现和第一结果

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摘要

Rotational Raman scattering in the Earth's atmosphere explains the filling-in of Fraunhofer lines in the solar spectrum. A new model including first-order rotational Raman scattering has been developed, based on a reimplementation of the versatile discrete ordinate radiative transfer (DISORT) solver in the C computer language. The solver is fully integrated in the freely available libRadtran radiative transfer package. A detailed description is given of the model including the spectral resolution and a spectral interpolation scheme that considerably speeds up the calculations. The model is used to demonstrate the effect of clouds on top and bottom of the atmosphere filling-in factors and differential optical depths. Cloud effects on vertical profiles of the filling-in factor are also presented. The spectral behaviour of the model is compared against measurements under thunderstorm and aerosol loaded conditions.
机译:地球大气中的旋转拉曼散射解释了太阳光谱中弗劳恩霍夫谱线的填充。基于以C语言编写的通用离散纵坐标辐射传递(DISORT)求解器的重新实现,已开发出包括一阶旋转拉曼散射的新模型。该求解器完全集成在免费提供的libRadtran辐射传递软件包中。对该模型进行了详细描述,其中包括光谱分辨率和可极大加快计算速度的光谱插值方案。该模型用于演示云对大气填充因子顶部和底部以及不同的光学深度的影响。还介绍了云对填充因子垂直剖面的影响。将模型的光谱行为与在雷暴和气溶胶加载条件下的测量结果进行比较。

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