首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Retrieval of downwelling UV actinic flux density spectra from spectral measurements of global and direct solar UV irradiance
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Retrieval of downwelling UV actinic flux density spectra from spectral measurements of global and direct solar UV irradiance

机译:从整体和直接太阳紫外线辐照度的光谱测量值中提取下流紫外线光化学通量密度光谱

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摘要

In the present study, a method is proposed for retrieving UV actinic flux density spectra at ground level from global and direct UV spectral irradiance measurements. The most important parameters to establish the relation between downwelling actinic flux density and global UV irradiance are the ratio of direct to global irradiance and the description of the angular distribution of the diffuse radiation field. Under clear skies, retrieved spectral actinic flux densities agreed with model calculations to within +/-5% for a variety of aerosol conditions. The assumption that the diffuse radiation is isotropic leads to a wavelength-dependent overestimation of actinic flux densities from 10 to 15%, depending on solar zenith angle, especially in atmospheres with high aerosol content. Various sources of uncertainties, which are involved in the proposed methodology, are discussed and quantified. [References: 20]
机译:在本研究中,提出了一种从全局和直接UV光谱辐照度测量中检索地面水平的UV光化通量密度光谱的方法。建立下流光化通量密度与整体紫外线辐照度之间关系的最重要参数是直接辐照度与整体辐照度之比以及对扩散辐射场的角度分布的描述。在晴朗的天空下,各种气溶胶条件下获得的光谱光化通量密度与模型计算一致,在+/- 5%以内。漫射辐射是各向同性的这一假设导致取决于波长的太阳光顶角(特别是在气溶胶含量高的环境中)对光化通量密度的波长依赖性高估了10%至15%。讨论并量化了所提出方法中涉及的各种不确定性来源。 [参考:20]

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