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Retrieval method of aerosol extinction coefficient profile by an integral lidar system and case study

机译:整体激光雷达系统气溶胶消光系数剖面反演方法及案例研究

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Aerosol extinction coefficient profile is an essential parameter for atmospheric radiation model. But it is difficult to get the full aerosol extinction profile from the ground to the tropopause especially in near ground precisely using backscattering lidar. A combined measurement of side-scattering, backscattering and Raman-scattering lidar is proposed to retrieve the aerosol extinction coefficient profile from the surface to the tropopause which covered a dynamic range of 5 orders. The side-scattering technique solves the dead zone and the overlap problem caused by the traditional lidar in the near range. Using the Raman-scattering the aerosol lidar ratio (extinction to backscatter ratio) can be obtained. The cases studies in this paper show the proposed method is reasonable and feasible.
机译:气溶胶的消光系数曲线是大气辐射模型的基本参数。但是很难从地面到对流层顶获得完整的气溶胶消光特征,尤其是在近地面使用反向散射激光雷达精确地。提出了对侧向散射,向后散射和拉曼散射激光雷达的组合测量,以检索从表面到对流层顶的气溶胶消光系数分布,其动态范围覆盖了5个数量级。侧向散射技术解决了传统激光雷达在近距离范围内引起的盲区和重叠问题。使用拉曼散射,可以获得气溶胶激光雷达比(消光比与后向散射比)。本文的案例研究表明,该方法是合理可行的。

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