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Aerosol lidar intercomparison in the framework of the EARLINET project. 1. Instruments

机译:EARLINET项目框架中的气溶胶激光雷达比对。 1.仪器

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In the framework of the European Aerosol Research Lidar Network to Establish an Aerosol Climatology (EARLINET), 19 aerosol lidar systems from 11 European countries were compared. Aerosol extinction or backscatter coefficient profiles were measured by at least two systems for each comparison. Aerosol extinction coefficients were derived from Raman lidar measurements in the UV (351 or 355 nm), and aerosol backscatter profiles were calculated from pure elastic backscatter measurements at 351 or 355, 532, or 1064 nm. The results were compared for height ranges with high and low aerosol content. Some systems were additionally compared with sunphotometers and starphotometers. Predefined maximum deviations were used for quality control of the results. Lidar systems with results outside those limits could not meet the quality assurance criterion. The algorithms for deriving aerosol backscatter profiles from elastic lidar measurements were tested separately, and the results are described in Part 2 of this series of papers [Appl. Opt. 43, 977-989 (2004)]. In the end, all systems were quality assured, although some had to be modified to improve their performance. Typical deviations between aerosol backscatter profiles were 10% in the planetary boundary layer and 0.1×10~(-6) m~(-1) sr~(-1) in the free troposphere.
机译:在建立气溶胶气候学(EARLINET)的欧洲气溶胶研究激光雷达网络的框架内,对来自11个欧洲国家的19个气溶胶激光雷达系统进行了比较。每次比较至少由两个系统测量气溶胶的消光或后向散射系数曲线。气溶胶的消光系数来自紫外线(351或355 nm)中的拉曼激光雷达测量结果,气溶胶的反向散射分布图是根据351或355、532或1064 nm处的纯弹性反向散射测量结果计算得出的。比较了高和低气溶胶含量的高度范围的结果。另外将一些系统与日光计和星光计进行了比较。预定义的最大偏差用于结果的质量控制。结果超出这些限制的激光雷达系统无法满足质量保证标准。分别测试了从弹性激光雷达测量结果得出气溶胶反向散射剖面的算法,其结果在本系列论文的第2部分中描述。选择。 43,977-989(2004)]。最后,所有系统都得到了质量保证,尽管有些系统必须进行修改以提高其性能。气溶胶反向散射剖面之间的典型偏差在行星边界层中为10%,在自由对流层中为0.1×10〜(-6)m〜(-1)sr〜(-1)。

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