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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Analytical algorithm for modeling polarized solar radiation transfer through the atmosphere for application in processing complex lidar and radiometer measurements
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Analytical algorithm for modeling polarized solar radiation transfer through the atmosphere for application in processing complex lidar and radiometer measurements

机译:用于模拟极化太阳辐射通过大气传输的分析算法,可用于处理复杂的激光雷达和辐射计测量

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摘要

Inversion algorithms and program packages recently created for processing data of the ground-based radiometer spectral measurements along with lidar multi-wavelength measurements are extremely multiparametric. Therefore, it is very important to develop an efficient program module for computations of functions modeling measurements by a sun-radiometer in the inversion procedure. In this paper, we present the analytical version of such efficient algorithm and analytical code on C+ + designed for performance of algorithm testing. The code computes multiple scattering of the Sun light in the atmosphere. Data output are the radiance and linear polarization parameters angular patterns at a preselected altitude. The atmosphere model with mixed aerosol and molecular scattering is given approximately as the homogeneous atmosphere model. The algorithm testing has been carried out by comparison of computed data with accurate data obtained on the base of the discrete-ordinate code. Errors of estimates of downward radiance above the Earth surface turned out to be within 10%-15%.. The analytical solution construction concept has taken from the scalar task of solar radiation transfer in the atmosphere where an approximate analytical solution was developed. Taking into account the fact that aerosol phase functions are highly forward elongated, the multi-component method of solving vector transfer equations and small-angle approximation have been used. Generalization of the scalar approach to the polarization parameters is described. (C) 2014 Elsevier Ltd. All rights reserved.
机译:最近创建的用于处理基于地面的辐射计光谱测量数据以及激光雷达多波长测量数据的反演算法和程序包非常多参数化。因此,开发一个高效的程序模块以在反演过程中通过太阳辐射计计算功能模型的测量结果非常重要。在本文中,我们介绍了这种高效算法的解析版本以及为执行算法测试而设计的C ++解析代码。该代码计算了太阳光在大气中的多次散射。数据输出是在预先选择的高度上的辐射度和线性极化参数的角度模式。具有混合气溶胶和分子散射的大气模型近似作为均匀大气模型给出。通过将计算数据与基于离散坐标代码获得的准确数据进行比较,进行了算法测试。估计地球表面向下辐射率的误差在10%-15%以内。分析解决方案的构建概念来自开发了近似分析解决方案的大气中太阳辐射传输的标量任务。考虑到气溶胶相位函数高度向前拉长的事实,已使用求解矢量传递方程和小角度近似的多分量方法。描述了对极化参数的标量方法的一般化。 (C)2014 Elsevier Ltd.保留所有权利。

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