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Retrieval of aerosol properties from combined multiwavelength lidar and sunphotometer measurements

机译:从多波长激光雷达和日光光度计的组合测量中获取气溶胶特性

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摘要

Simulation studies were carried out with regard to the feasibility of using combined observations from sunphotometer (SPM) and lidar for microphysical characterization of aerosol particles, i.e., the retrieval of effective radius, volume, and surface-area concentrations. It was shown that for single, homogeneous aerosol layers, the aerosol parameters can be retrieved with an average accuracy of 30percent for a wide range of particle size distributions. Based on the simulations, an instrument combination consisting of a lidar that measures particle backscattering at 355 and 1574 nm, and a SPM that measures at three to four channels in the range from 340 to 1020 nm is a promising tool for aerosol characterization. The inversion algorithm has been tested for a set of experimental data. The comparison with the particle size distribution parameters, measured with in situ instrumentation at the lidar site, showed good agreement.
机译:关于使用日光光度计(SPM)和激光雷达的组合观测进行气溶胶颗粒的微物理表征(即检索有效半径,体积和表面积浓度)的可行性,进行了模拟研究。结果表明,对于单个均匀的气溶胶层,对于各种粒径分布,可以以30%的平均精度检索气溶胶参数。基于模拟,由激光雷达(可测量355和1574 nm处的粒子反向散射)和SPM(可在340至1020 nm范围内的三至四个通道进行测量)组成的仪器组合是气溶胶表征的有前途的工具。该反演算法已针对一组实验数据进行了测试。与在激光雷达站点现场仪器测量的粒度分布参数的比较显示出良好的一致性。

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