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Parameterized code SHARM-3D for radiative transfer over inhomogeneous surfaces

机译:参数化代码SHARM-3D,用于非均匀表面上的辐射传递

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摘要

The code SHARM-3D, developed for fast and accurate simulations of the monochromatic radiance at the top of the atmosphere over spatially variable surfaces with Lambertian or anisotropic reflectance, is described. The atmosphere is assumed to be laterally uniform across the image and to consist of two layers with aerosols contained in the bottom layer. The SHARM-3D code performs simultaneous calculations for all specified incidence-view geometries and multiple wavelengths in one run. The numerical efficiency of the current version of code is close to its potential limit and is achieved by means of two innovations. The first is the development of a comprehensive precomputed lookup table of the three-dimensional atmospheric optical transfer function for various atmospheric conditions. The second is the use of a linear kernel model of the land surface bidirectional reflectance factor (BRF) in our algorithm that has led to a fully parameterized solution in terms of the surface BRF parameters. The code is also able to model inland lakes and rivers. The water pixels are described with the Nakajima-Tanaka BRF model of wind-roughened water surface with a Lambertian offset, which is designed to model approximately the reflectance of suspended matter and of a shallow lake or river bottom.
机译:描述了代码SHARM-3D,该代码开发用于快速准确地模拟具有朗伯或各向异性反射的空间可变表面上大气顶部的单色辐射。假定整个图像上的大气在横向上均一,并且由两层组成,且底层中包含气溶胶。 SHARM-3D代码一次运行即可对所有指定的入射视图几何形状和多个波长执行同步计算。当前版本代码的数值效率已接近其潜在极限,并且通过两项创新得以实现。首先是针对各种大气条件的三维大气光学传递函数的综合预计算表的开发。第二个是在我们的算法中使用了陆地表面双向反射系数(BRF)的线性核模型,该模型导致了关于表面BRF参数的完全参数化的解决方案。该代码还能够为内陆湖泊和河流建模。水像素使用带有朗伯偏移的风化水面的Nakajima-Tanaka BRF模型进行描述,该模型用于模拟悬浮物和浅湖或河底的反射率。

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