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Study on the retrieval of MODIS 1- km aerosol optical thickness combining extended dark object method and V5.2 algorithm over Beijing

机译:结合扩展暗物法和V5.2算法在北京地区探测MODIS 1- km气溶胶光学厚度的研究。

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Atmospheric aerosol plays a significant role in radiative budget, climate change, hydrological processes, and the global carbon, nitrogen and sulfur cycles. Aerosol optical thickness (AOT) is a key property used in the characterization of atmospheric aerosol. There is a relatively long history of the quantitative estimation of AOT from remotely sensed imagery; especially the dark object method has already made many progresses in the retrieval of AOT over the areas with low surface reflectance. Based on the analysis of the advantages and limits of dark object method, extended dark object method, V5.2 algorithm and four-branched decision method, we introduce a combined method to retrieve AOT over some areas around Beijing using moderate resolution imaging spectroradiometer (MODIS) data, the retrieval results are validated with AERONET data in Beijing and Xianghe sites.
机译:大气气溶胶在辐射预算,气候变化,水文过程以及全球碳,氮和硫循环中起着重要作用。气溶胶光学厚度(AOT)是表征大气气溶胶的关键特性。根据遥感影像对AOT进行定量估算的历史比较长。特别是暗物法在低表面反射率区域的AOT检索中已经取得了许多进展。在分析暗物法,扩展暗物法,V5.2算法和四分支决策法的优势和局限性的基础上,我们引入了一种结合方法,利用中分辨率成像分光光度计(MODIS)检索北京周边地区的AOT。 )数据,使用北京和香河站点的AERONET数据对检索结果进行验证。

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