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Evaluation of a relationship between aerosols and surface downward shortwave flux through an integrative analysis of modeling and observation

机译:通过建模和观测的综合分析评估气溶胶与表面向下短波通量之间的关系

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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 this study, we attempt to investigate the effects of aerosol optical thickness (AOT) and single scattering albedo (SSA) on SDSF through an integrative analysis of modeling and observation. At first, we compared the results obtained by a global aerosol model, SPR1NTARS, with in-situ measurements, AERONET and BSRN. And then we estimated the impacts of AOT and SSA on SDSF through an offline radiative transfer model, Rstar. Through this study, we found that the difference in SDSF between SPRINTARS and BSRN is much larger over heavy aerosol regions than those over regions. Using the Rstar radiative transfer model, we demonstrated 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 W m~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:尽管气溶胶对地表向下短波通量(SDSF)有很大的影响,但尚未对全局模型中的气溶胶负荷与SDSF之间的关系进行充分研究。在这项研究中,我们试图通过对建模和观测的综合分析来研究气溶胶光学厚度(AOT)和单散射反照率(SSA)对SDSF的影响。首先,我们将全球气溶胶模型SPR1NTARS与现场测量AERONET和BSRN所获得的结果进行了比较。然后,我们通过离线辐射传输模型Rstar估算了AOT和SSA对SDSF的影响。通过这项研究,我们发现在重气溶胶区域中,SPRINTARS和BSRN之间SDSF的差异要比在区域中更大。使用Rstar辐射传递模型,我们证明了AOT差异通常对SDSF差异的影响最大,而SSA差异对重度气溶胶负载区域的影响中等,而水蒸气的影响可以忽略。最后,我们生成了一个等高线图来演示AOT-SSA-SDSF之间的关系。例如,在低AOT(例如0.15)时,SDSF的20 W m〜2变化需要进行超过0.2的SSA变化,而在高AOT(例如0.85)时,SDSF则需要相同的变化。仅具有0.05的SSA更改。

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