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Synergy processing of diverse ground-based remote sensing and in situ data using the GRASP algorithm: applications to radiometer, lidar and radiosonde observations

机译:使用掌握算法的不同地面遥感和原位数据的协同加工:应用于辐射计,激光雷达和无线电探测器的应用

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The exploration of aerosol retrieval synergies from diverse combinations of ground-based passive Sun-photometric measurements with collocated active lidar ground-based and radiosonde observations using versatile Generalized Retrieval of Atmosphere and Surface Properties (GRASP) algorithm is presented. Several potentially fruitful aspects of observation synergy were considered. First, a set of passive and active ground-based observations collected during both day- and nighttime was inverted simultaneously under the assumption of temporal continuity of aerosol properties. Such an approach explores the complementarity of the information in different observations and results in a robust and consistent processing of all observations. For example, the interpretation of the nighttime active observations usually suffers from the lack of information about aerosol particles sizes, shapes and complex refractive index. In the realized synergy retrievals, the information propagating from the nearby Sun-photometric observations provides sufficient constraints for reliable interpretation of both day- and nighttime lidar observations. Second, the synergetic processing of such complementary observations with enhanced information content allows for optimizing the aerosol model used in the retrieval. Specifically, the external mixture of several aerosol components with predetermined sizes, shapes and composition has been identified as an efficient approach for achieving reliable retrieval of aerosol properties in several situations. This approach allows for achieving consistent and accurate aerosol retrievals from processing stand-alone advanced lidar observations with reduced information content about aerosol columnar properties. Third, the potential of synergy processing of the ground-based Sun-photometric and lidar observations, with the in situ backscatter sonde measurements was explored using the data from KAUST.15 and KAUST.16 field campaigns held at King Abdullah University of Science and Technology?(KAUST) in the August of 2015 and 2016. The inclusion of radiosonde data has been demonstrated to provide significant additional constraints to validate and improve the accuracy and scope of aerosol profiling. The results of all retrieval setups used for processing both synergy and stand-alone observation data sets are discussed and intercompared.
机译:展示了利用使用多功能广义检索的基于基于基于激光阳光测量和无线电探测的基于基于基于的基于激光阳光测量的不同组合的气溶胶检索协同效应。考虑了几种潜在的观察协同作用方面。首先,在日常和夜间收集的一组被动和基于基于基于基于地基的观察,同时在气溶胶特性的时间连续性的情况下同时倒置。这种方法探讨了不同观察中信息的互补性,并导致所有观察结果的稳健和一致的处理。例如,夜间活动观测的解释通常缺乏有关气溶胶颗粒尺寸,形状和复杂折射率的信息。在实现的协同检索中,从附近的太阳光度观测传播的信息提供了足够的限制,以便对日常连续运动员观察的可靠解释。其次,具有增强信息内容的这种互补观测的协同处理允许优化在检索中使用的气溶胶模型。具体地,已经鉴定了几种具有预定尺寸,形状和组合物的气溶胶组分的外部混合物作为在几种情况下实现可靠​​检索气溶胶性质的有效方法。这种方法允许通过减少关于气溶胶柱状特性的信息含量降低信息含量,实现一致和准确的气溶胶检索。三,利用来自k退绸的数据和Kaust16探讨了在kaust15和Kaust的数据探索了地面阳光光度和激光乐雷达观测的潜力。 (KAURY)于2015年和2016年8月。已经证明了包含无线电探空仪数据,为验证和提高气溶胶分析的准确性和范围提供了重要的额外约束。讨论并对处理协同和独立观察数据集的所有检索设置的结果是讨论和互通的。

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