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Impact of aerosol hygroscopic growth on retrieving aerosol extinction coefficient profiles from elastic-backscatter lidar signals

机译:气溶胶吸湿性增长对从弹性后向散射激光雷达信号获取气溶胶消光系数分布的影响

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Light detection and ranging (lidar) measurements have been widely used to profile the ambient aerosol extinction coefficient (iσ/isubext/sub). The particle extinction-to-backscatter ratio (lidar ratio, LR), which strongly depends on the aerosol dry particle number size distribution (PNSD) and aerosol hygroscopicity, is introduced to retrieve the iσ/isubext/sub profile from elastic-backscatter lidar signals. Conventionally, a?constant column-integrated LR that is estimated from aerosol optical depth is used by the retrieving algorithms. In this paper, the influences of aerosol PNSD, aerosol hygroscopic growth and relative humidity (RH) profiles on the variation in LR are investigated based on the datasets from field measurements in the North China Plain (NCP). Results show that LR has an enhancement factor of 2.2 when RH reaches 92?%. Simulation results indicate that both the magnitude and vertical structures of the iσ/isubext/sub profiles by using the column-related LR method are significantly biased from the original iσ/isubext/sub profile. The relative bias, which is mainly influenced by RH and PNSD, can reach up to 40?% when RH at the top of the mixed layer is above 90?%. A?new algorithm for retrieving iσ/isubext/sub profiles and a?new scheme of LR enhancement factor by RH in the NCP are proposed in this study. The relative bias between the iσ/isubext/sub profile retrieved with this new algorithm and the ideal true value is reduced to below 13?%.
机译:光检测和测距(激光)测量已广泛用于描述环境气溶胶的消光系数(σ ext )。引入了颗粒消光与背向散射比(激光雷达比,LR),该比值很大程度上取决于气溶胶干颗粒数分布(PNSD)和气溶胶吸湿性,以检索σ ext弹性后向散射激光雷达信号的配置文件。常规上,检索算法使用根据气溶胶光学深度估算的恒定列积分LR。本文基于华北平原(NCP)野外实测数据,研究了气溶胶PNSD,气溶胶吸湿性生长和相对湿度(RH)剖面对LR变化的影响。结果表明,当RH达到92%时,LR具有2.2的增强因子。仿真结果表明,与列相关的LR方法使用σ ext 轮廓的幅度和垂直结构都明显偏离原始的σ ext 个人资料。当混合层顶部的RH大于90%时,主要受RH和PNSD影响的相对偏置可以达到40%。提出了一种在NCP中利用RH检索σ ext 分布图的新算法和RH增强因子的新方案。用该新算法检索的σ ext 配置文件与理想真实值之间的相对偏差降低到13%以下。

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