计算大气层中漫反射、漫透和非散射太阳辐射通量的光谱和角度分布

IF 1.204 Q3 Energy
M. M. Sobirov, J. Yu. Rozikov, D. A. Yusupova, V. U. Ruziboev
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引用次数: 0

摘要

摘要 研究了空气分子上多重瑞利散射产生的大气中漫反射和透射太阳辐射通量强度的光谱和角度分布。此外,还计算了漫反射、透射和非散射太阳辐射流出大气层的总通量的光谱分布。结果表明,这些通量在光谱上的重新分布取决于照射角度。漫射辐射强度的计算是在钱德拉塞卡(Chandrasekhar)的\(X,Y\)函数理论框架内进行的,该理论是利用因式分解法开发的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Calculation of Spectral and Angular Distribution of Diffusely Reflected, Diffusely Transmitted, and Unscattered Fluxes of Solar Radiation in Atmospheric Layers

The Calculation of Spectral and Angular Distribution of Diffusely Reflected, Diffusely Transmitted, and Unscattered Fluxes of Solar Radiation in Atmospheric Layers

The Calculation of Spectral and Angular Distribution of Diffusely Reflected, Diffusely Transmitted, and Unscattered Fluxes of Solar Radiation in Atmospheric Layers

The spectral and angular distributions of the intensity of diffusely reflected and transmitted solar radiation fluxes in the atmosphere, resulting from multiple Rayleigh scattering on air molecules, have been studied. Additionally, calculations of the spectral distribution of total fluxes of diffusely reflected, transmitted, and unscattered solar radiation exiting the atmospheric layers have been performed. It is demonstrated how the redistribution of these fluxes across the spectrum occurs depending on the angle of illumination. The calculations of diffuse radiation intensity were carried out within the framework of the theory of Chandrasekhar’s \(X,Y\) functions theory, developed using the factorization method.

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来源期刊
Applied Solar Energy
Applied Solar Energy Energy-Renewable Energy, Sustainability and the Environment
CiteScore
2.50
自引率
0.00%
发文量
0
期刊介绍: Applied Solar Energy  is an international peer reviewed journal covers various topics of research and development studies on solar energy conversion and use: photovoltaics, thermophotovoltaics, water heaters, passive solar heating systems, drying of agricultural production, water desalination, solar radiation condensers, operation of Big Solar Oven, combined use of solar energy and traditional energy sources, new semiconductors for solar cells and thermophotovoltaic system photocells, engines for autonomous solar stations.
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