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Climatology of Aerosol Optical Depth at Mid-Continental US Site: Ground-based Observations

机译:气溶胶光学深度在中部大陆美国网站:基于地面的观察

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The total aerosol burden in the atmosphere is typically represented by aerosol optical depth (AOD). To capture important and climate-relevant signatures of the aerosol burden, such as year-to-year and seasonal variability, continuous multi-year AOD observations are required. For more than two decades, these observations have been performed at the mid-continental Atmospheric Radiation Measurement (ARM) Southern Great Plains (SGP) Central Facility (CF) using ground-based passive remote sensing. The partially overlapping and fragmentary AOD records at the ARM SGP CF have been provided by four individual instruments, namely two co-located (C1 and E13) Multifilter Rotating Shadowband Radiometers (MFRSRs), a Normal Incidence Multifilter Radiometer (NIMFR), and a Cimel Sunphotometer (CSPHOT). Since these individual records are sporadic with instrument- and time-dependent data quality, development of a continuous multi-year high-quality AOD dataset is a challenging task. In this work, an initial development of a continuous 20-year (1997-2017) high-quality AOD product is introduced. The development involves (1) incorporation of the available data quality information and delivery of the historical time series of AOD with high quality from four individual instruments, (2) comparison of multiple AOD retrievals to identify potential instrument-related issues and/or retrieval problems, and (3) merging these individual time series, generation of a two-decade continuous climatology of high-quality AOD and reporting of the uncertainty estimations of the merged product.
机译:大气中的气溶胶总负荷通常由气溶胶光学深度(AOD)表示。为了捕获气溶胶负担的重要和气候相关的签名,例如年度和季节性变异性,需要连续的多年AOD观察。超过二十年,使用基于地基的无源遥感,在中大陆大气辐射测量(ARM)中央设施(CF)中进行了这些观察。 ARM SGP CF的部分重叠和碎片AOD记录已经由四个单独的仪器提供,即两个共同定位(C1和E13)多滤网旋转阴影带辐射仪(MFRSRS),正常入射多滤光器辐射计(NIMFR)和一个灵感阳光计(csphot)。由于这些个别记录具有零脚摩擦,因此依赖于仪器和时间依赖数据质量,因此连续多年高质量AOD数据集的开发是一个具有挑战性的任务。在这项工作中,介绍了连续20年(1997-2017)高质量AOD产品的初步开发。该开发涉及(1)纳入可用的数据质量信息,并以高质量的四个单独的仪器提供高质量的AOD,(2)比较多次AOD检索以识别潜在的仪器相关问题和/或检索问题的历史时间序列(3)合并这些单独的时间序列,产生高质量AOD的两十年持续的气候学和报告合并产品的不确定性估算。

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