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《Chinese Journal of Atmospheric Sciences》 2006-05
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Broadband Diffuse Radiation Method to Retrieve Radiation-Weighted Mean Aerosol Single Scattering Albedo

QIU Jin-HuanInstitute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029  
In this paper,radiation-weighted mean single scattering albedo(SSA) and ngstrm index are introduced,and a method to retrieve the SSA from broadband solar diffuse radiation is presented.As shown in 2160 sets of numerical simulations,in the case of the Junge aerosol size distribution and for the usual aerosol optical thickness,ngstrm index and imaginary part of aerosol refractive index,relative standard errors in broadband solar reflectance,diffuse transmittance,total transmittance and absorption calculations using the SSA are all within 1.107%,and their absolute standard errors within 0.00287.For non-Junge continent and urban-industrial aerosols(composed of water-soluble,dust-like and soot particles),relative and absolute standard errors among 72 sets of reflectance,transmittance and absorption calculations using the SSA are within 2.047% and 0.0075,respectively.Under an assumption of the Junge aerosol,a method to simultaneously retrieve aerosol optical thickness(AOT) and the radiation-weighted mean SSA is proposed using both broadband solar direct and diffuse radiations.Furthermore,the three main error factors of the SSA retrievals are analyzed through retrieval simulations.According to the retrieval results,three conclusions are obtained.At first,if the error of ngstrm index is within ±0.2 and 0.55 μm-wavelength AOT is larger than 0.312,errors of the SSA retrievals are within ±0.0418 for the continent aerosol.Secondly,the wavelength-independent broadband surface albedo is suitable for the SSA retrievals.Thirdly,the larger aerosol optical thickness is,the smaller the error of the SSA solution caused by the error of radiation data.Under the condition of 0.55 μm-wavelength aerosol optical thickness being larger than 0.312,the errors of SSA solutions are within ±0.0149 and ±0.0317 if radiation data errors are within ±2% and ±4%,respectively.
【Fund】: 国家自然科学基金资助项目40333029
【CateGory Index】: P422.1
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