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单波段米氏散射施密特校正激光雷达技术的大气消光系数反演与验证

Atmospheric extinction coefficient retrieval and validation for the single-band Mie-scattering Scheimpflug lidar technique.

作者信息

Mei Liang, Guan Peng, Yang Yang, Kong Zheng

出版信息

Opt Express. 2017 Aug 7;25(16):A628-A638. doi: 10.1364/OE.25.00A628.

Abstract

An 808 nm single-band Mie scattering Scheimpflug lidar system is developed in Dalian, Northern China, for real-time, large-area atmospheric aerosol/particle remote sensing. Atmospheric measurement has been performed in urban area during a typical haze weather condition, and time-range distribution of atmospheric backscattering signal is recorded from March 18th to 22nd, 2017, by employing the Scheimpflug lidar system. Atmospheric extinction coefficient is then retrieved according to the Klett-inversion algorithm, while the boundary value is obtained by the slope-method in the far end where the atmosphere is homogeneous in a subinterval region. The correlation between the extinction coefficients retrieved from the Scheimpflug lidar technique and the PM10/PM2.5 concentrations measured by a conventional air pollution monitoring station is also studied. The good agreement between the measurement results, i.e., a correlation coefficient of 0.85, successfully demonstrates the feasibility and great potential of the Scheimpflug lidar technique for atmospheric studies and applications.

摘要

在中国北方的大连,研发了一种808纳米单波段米氏散射施密特校正激光雷达系统,用于实时、大面积的大气气溶胶/颗粒物遥感探测。在一次典型的雾霾天气条件下,于市区进行了大气测量,并利用施密特校正激光雷达系统记录了2017年3月18日至22日大气后向散射信号的时间-距离分布。然后根据克莱特反演算法反演大气消光系数,而边界值则通过在大气在子区间区域均匀的远端采用斜率法获得。还研究了从施密特校正激光雷达技术反演得到的消光系数与传统空气污染监测站测量的PM10/PM2.5浓度之间的相关性。测量结果之间的良好一致性,即相关系数为0.85,成功证明了施密特校正激光雷达技术在大气研究和应用中的可行性和巨大潜力。

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