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Evaluation of a Relationship between Aerosols and Surface Downward Shortwave Flux through an Integrative Analysis of a Global Aerosol-Transport Model and In-Situ Measurements

机译:通过全球气溶胶运输模型和原位测量的整合分析评价气溶胶与表面向下短波通量的关系

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Although aerosols have great impacts on Surface Downward Shortwave Flux (SDSF), the relationship between aerosol loading and SDSF in global models has not yet been adequately investigated. In the present study, we attempt to investigate/estimate the effects of aerosol optical thickness (AOT), single scattering albedo (SSA) and amount of precipitable water vapor (PWV) on SDSF through an integrative comparison and analysis of a global aerosol-transport model, SPRINTARS, a radiative transfer model, Rstar, and in-situ measurements, AERONET and BSRN. We found that the AOT difference usually has the strongest impact on the SDSF difference and the SSA difference has a moderate impact over heavy aerosol loading regions, whereas the effect of water vapor can be ignored. Finally, we generated a contour plot to demonstrate the relationships between AOT-SSA-SDSF. For example, at low AOT (e.g., 0.15), the 20 Wm~(-2) changes in SDSF are required to make more than 0.2 changes of SSA, whereas at high AOT (e.g., 0.85), the same changes in SDSF are required to have only 0.05 changes of SSA.
机译:尽管气溶胶对表面向下短波(SDSF)产生了很大的影响,但尚未充分调查气溶胶载荷和SDSF之间的关系。在本研究中,我们试图通过全球气溶胶运输的整合比较和分析来研究/估算气溶胶光学厚度(AOT),单散射Albedo(SSA),单散射Albedo(SSA)和可析出水蒸气(PWV)的量的影响模型,Sprintars,辐射转移模型,RSTAR和原位测量,AerOnet和BSRN。我们发现,AOT差异通常对SDSF差异的影响最强,SSA差异对重型气溶胶装载区域具有适度的影响,而可以忽略水蒸气的效果。最后,我们生成了一个轮廓图来展示AOT-SSA-SDSF之间的关系。例如,在低AOT(例如,0.15)时,SDSF的20WM〜(-2)变化需要在SSA的大于0.2的变化时,而在高AOT(例如,0.85)时,SDSF的相同变化需要只有0.05个变化的SSA。

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