Correlation analysis on light scattering intensity distribution and mass concentration of atmospheric particles in different polarization states

X. Wang, Heng Zhao, Ruofei Wang, Jiaqi Li
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Abstract

The light scattering method has the advantages of simple structure and good real-time performance in measuring the mass concentration of particulate matter. It is usually used to calibrate the laboratory standard particles to ensure the accuracy of measurement. However, the actual measured particle size of pollutant particles is complex and changeable, it is necessary to explore the scattering light intensity distribution law in multi-detection angles under different particle sizes. The numerical simulation results obtain scattering light intensity distribution of silica particles under different polarization state light sources, and get the appropriate range of detection angle. This paper mainly designs a set of device to measure the scattering light intensity and mass concentration of particulate matter. Meanwhile, the standard instrument TSI was used to measure the real-time change of the mass concentration of particulate matter. The results show that the scattering light intensity signal measured by photodetector is highly correlated with the mass concentration measured by the TSI standard instrument, and the mass concentration of the particles measured by the system is in good agreement with the standard instrument TSI. The scattering light intensity can effectively invert the real-time mass concentration of particulate matter. The experimental device is suitable for real-time measurement of particulate matter mass concentration.
不同偏振态大气粒子光散射强度分布与质量浓度的相关性分析
光散射法测量颗粒物质量浓度具有结构简单、实时性好等优点。它通常用于校准实验室标准颗粒,以确保测量的准确性。但实际测量的污染物颗粒粒径复杂多变,有必要探索不同粒径下多探测角度散射光强的分布规律。数值模拟结果得到了不同偏振态光源下二氧化硅颗粒的散射光强分布,并得到了合适的探测角度范围。本文主要设计了一套测量颗粒物散射光强和质量浓度的装置。同时,采用标准仪器TSI实时测量颗粒物质量浓度的变化。结果表明,光电探测器测得的散射光强信号与TSI标准仪器测得的颗粒质量浓度高度相关,系统测得的颗粒质量浓度与TSI标准仪器测得的颗粒质量浓度吻合较好。散射光强可以有效地反演实时颗粒物的质量浓度。该实验装置适用于实时测量颗粒物质量浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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