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首页> 外文期刊>Applied optics >Standoff determination of the particle size and concentration of small optical depth clouds based on double scattering measurements: concept and experimental validation with bioaerosols
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Standoff determination of the particle size and concentration of small optical depth clouds based on double scattering measurements: concept and experimental validation with bioaerosols

机译:基于双重散射测量的小光学深度云的粒径和浓度的僵持确定:概念和生物气溶胶的实验验证

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摘要

A multiple-field-of-view (MFOV) lidar is used to characterize size and optical depth of low concentration of bioaerosol clouds. The concept relies on the measurement of the forward scattered light by using the background aerosols at various distances at the back of a subvisible cloud. It also relies on the subtraction of the background aerosol forward scattering contribution and on the partial attenuation of the first-order backscattering. The validity of the concept developed to retrieve the effective diameter and the optical depth of low concentration bioaerosol clouds with good precision is demonstrated using simulation results and experimental MFOV lidar measurements. Calculations are also done to show that the method presented can be extended to small optical depth cloud retrieval. (c) 2008 Optical Society of America.
机译:多视场(MFOV)激光雷达用于表征低浓度生物气溶胶云的大小和光学深度。该概念依赖于通过使用亚可见云背面不同距离处的背景气溶胶来测量前向散射光。它还依赖于背景气溶胶正向散射贡献的减法和一阶反向散射的部分衰减。通过仿真结果和实验MFOV激光雷达测量结果,证明了开发的以低精度检索低浓度生物气溶胶云的有效直径和光学深度的概念的有效性。计算也表明,所提出的方法可以扩展到较小的光学深度云检索。 (c)2008年美国眼镜学会。

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