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A method of determining multi-wavelength lidar ratios combining aerodynamic particle sizer spectrometer and sun-photometer

机译:一种确定空气动力学粒子Sizer光谱仪和太阳光度计结合多波长LIVAR比率的方法

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摘要

The lidar equation solution for atmosphere requires knowledge of the lidar ratio along the lidar line of sight. The lidar ratio is depended on the wavelength of lidar, so it is difficult to determine the lidar ratios in multi-wavelength lidar. A method that determines the multi-wavelength lidar ratios combining sun photometer and aerodynamic particle sizer spectrometer (APS) is proposed. The optimal lidar ratios at three wavelengths (355 nm, 532 nm and 1064 nm) are deduced from comparing the aerosol optical depth (AOD) derived from sun-photometer and the multi-wavelength lidar. The feasibility and practicability of this method is tested by the actual experiment. The uncertainty of determining lidar ratios in multi wavelength lidar is reduced. The aerosol extinction coefficient retrieved using this method is improved with accuracy of 12.8%, 26.3% and 8.2% at 355 nm, 532 nm and 1064 nm respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:大气的激光雷达方程解决方案需要了解沿激光雷达视线的激光雷达比。 激光雷达比依赖于激光雷达的波长,因此难以确定多波长延迟的LIDAR比率。 提出了一种确定组合太阳光度计和空气动力学粒子分光仪(APS)的多波长LIVAR比率的方法。 推导出三个波长(355nm,532nm和1064nm)的最佳激光雷达比进行比较从太阳光度计和多波长延伸的气溶胶光学深度(AOD)。 该方法的可行性和实用性由实际实验测试。 减少了确定多波长激光雷达中LIDAR比率的不确定性。 使用该方法检索的气溶胶消光系数以分别为355nm,532nm和1064nm的准确度为12.8%,26.3%和8.2%。 (c)2018年elestvier有限公司保留所有权利。

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