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Single Scattering Albedo’s Spectral Dependence Effect on UV Irradiance

机译:单一散射反照率对紫外线辐射的光谱依赖性影响

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摘要

The absorbing and scattering nature of aerosols affects the total radiative forcing and is quantified by single scattering albedo (SSA), which is defined as the absorption to total extinction ratio. There are limited measurements of SSA in the ultraviolet (UV) irradiance spectrum, hence, the influence of SSA on incoming UV irradiance has not been explored in great depth. In the present study, UV irradiance was calculated and compared using different SSA datasets retrieved at Athens, Greece during 2009–2014; including SSA time series from Ultraviolet Multi-Filter Radiometer (UVMFR) at 332 and 368 nm, SSA from AERONET at 440 nm, from OMI satellite at 342.5 nm and AeroCom climatological database at 300 nm. Irradiances were estimated using a radiative transfer model (RTM). Comparisons of these results revealed that relative differences of UVA and UVB could be as high as 20%, whilst average relative differences varied from 2% to 8.7% for the entire experimental period. Both UVA and UVB drop by a rate of ~12% for 0.05 aerosol absorption optical depth in comparison to ones estimated with the use of SSA at visible range. Brewer irradiance measurements at 324 nm were used to validate modeled monochromatic irradiances and a better agreement was found when UVMFR SSAs were used with an average difference of 0.86%. However, when using visible or climatological input, relative differences were estimated +4.91% and +4.15% accordingly.
机译:气溶胶的吸收和散射特性会影响总的辐射强迫,并通过单散射反照率(SSA)进行量化,其定义为吸收与总消光比。在紫外线(UV)辐照光谱中,SSA的测量值有限,因此,尚未深入探讨SSA对入射UV辐照的影响。在本研究中,使用2009-2014年在希腊雅典检索到的不同SSA数据集计算并比较了紫外线辐照度;包括来自紫外多滤光片辐射计(UVMFR)的332和368 nm的SSA时间序列,来自AERONET的440 nm的SSA,来自342.5 nm的OMI卫星的ASA时间序列以及位于300 nm的AeroCom气候数据库。使用辐射转移模型(RTM)估算辐照度。这些结果的比较表明,UVA和UVB的相对差异可能高达20%,而在整个实验期间,平均相对差异从2%到8.7%不等。与使用可见光范围内使用SSA估算的0.05气溶胶吸收光学深度相比,UVA和UVB均下降约12%。使用在324 nm处的Brewer辐照度测量值来验证建模的单色辐照度,并且当使用UVMFR SSA时发现更好的一致性,其平均差异为0.86%。但是,使用可见或气候输入时,相对差异估计为+ 4.91%和+ 4.15%。

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