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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Deriving surface ultraviolet radiation from CERES surface and atmospheric radiation budget: Methodology
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Deriving surface ultraviolet radiation from CERES surface and atmospheric radiation budget: Methodology

机译:推导表面紫外线辐射谷神星表面和大气辐射预算:方法

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We describe an algorithm that retrieves the surface UVB (280–315 nm) and UVA (315–400 nm) irradiances from the Surface and Atmosphere Radiation Budget (SARB) product of Clouds and the Earth's Radiant Energy System (CERES). The SARB product we use here routinely calculates the vertical profiles of shortwave, longwave, and window channel irradiances with inputs of retrievals from imagers collocated with CERES. The top of the atmosphere broadband irradiance from SARB is constrained by CERES broadband irradiance. The shortwave spectrum in the SARB calculation is divided into 15 bands, and the two ultraviolet spectral bands, band 5 (298.5–322.5 nm) and band 6 (322.5–357.5 nm), are used to generate surface UVB and UVA irradiances. In this study, we develop a set of ratio lookup tables to derive surface UVB and UVA irradiances from SARB band 5 and band 6 outputs. We show that the ratio of band 5 to UVB irradiance is sensitive to total column ozone, solar zenith angle, surface albedo, and the atmospheric profile in cloud-free conditions; in cloudy conditions, the ratio of band 5 to UVB irradiance is also sensitive to cloud optical depth and height. Additionally, we show that the ratio of band 6 to UVA irradiance is sensitive to solar zenith angle, surface albedo, and cloud optical depth. We also derive a UV index from the UVB irradiance. Our algorithm may be applied at any surface elevation or surface type, including snow and ice. Surface UV irradiances derived from the lookup table that we created agree well with those computed by the high-resolution, multistream radiative transfer code, with differences ranging from -10% to +4% for UVB and UVA irradiances. The relative differences for the UV index are higher, ranging from -26% to +16%.
机译:我们描述一个检索的算法表面UVB (280 - 315 nm)和UVA(315 - 400海里)辐照度的表面和大气辐射云(SARB)产品和预算地球辐射能量系统(CERES)。产品我们使用常规计算垂直的短波,长波窗口通道输入的辐照度检索与CERES成像系统配置。大气层的顶端宽带发光从SARB受制于谷神星宽带辐照度。计算分为15个乐队,和这两个概念紫外光谱乐队,乐队5 (298.5 - -322.5海里),带6(322.5 - -357.5海里),用于生成表面防止UVA和UVB辐照度。研究中,我们发展一套比查找表从SARB获得表面防止UVA和UVB辐照度带5和带6输出。带5的UVB对总辐照度是敏感列臭氧、太阳天顶角、表面反照率,和大气剖面无云条件;带5 UVB辐照度也是敏感的云光学深度和高度。表明,带6 UVA照度的比值太阳天顶角,敏感表面吗反照率,和云光学深度。UVB紫外线指数的辐照度。可以应用在任何表面高程或表面类型,包括雪和冰。辐照度来源于我们的查找表创建与计算吻合较好高分辨率、多流道辐射传输代码,与现在的差异从-10%到4%不等为防止UVA和UVB辐照度。紫外线指数较高,差异等从-26% + 16%。

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