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Impacts of PM concentrations on visibility impairment

机译:PM集中对可见性损伤的影响

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In the paper, an accurate and sensitive cavity attenuated phase shift spectroscopy (CAPS) sensor was used to monitor the atmospheric visibility. The CAPS system mainly includes a LED light source, a band-pass filter, an optical resonant cavity (composed of two high mirror, reflectivity is greater than 99.99%), a photoelectric detector and a lock-in amplifier. The 2L/min flow rate, the optical sensor rise and fall response time is about 15 s, so as to realize the fast measurement of visibility. An Allan variance analysis was carried out evaluating the optical system stability (and hence the maximum averaging time for the minimum detection limit) of the CAPS system. The minima (~0.1 Mm-1) in the Allan plots show the optimum average time (~100s) for optimum detection performance of the CAPS system. During this period, the extinction coefficient was correlated with PM2.5 mass (0.88), the extinction coefficient was correlated with PM10 mass (0.85). The atmospheric visibility was correlated with PM2.5 mass (0.74). The atmospheric visibility was correlated with PM10 mass (0.66).
机译:在本文中,使用精确敏感的腔衰减相移光谱(盖子)传感器来监测大气的可视性。帽系统主要包括LED光源,带通滤波器,光学谐振腔(由两个高镜子组成,反射率大于99.99%),光电检测器和锁定放大器。 2L / min流速,光学传感器上升和抵抗时间约为15秒,以实现可见性的快速测量。对帽系统的光学系统稳定性进行了评估了Allan方差分析,从而进行了光学系统稳定性(并因此的最小检测限的最大平均时间)。 Allan图中的最小值(约0.1mm-1)显示了最佳的平均时间(〜100s),以实现帽系统的最佳检测性能。在此期间,消光系数与PM2.5质量(0.88)相关,消光系数与PM10质量相关(0.85)。大气可见性与PM2.5质量相关(0.74)。大气的可见性与PM10质量相关(0.66)。

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