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Retrieval of physical properties of particulate emission from animal feeding operations using three-wavelength elastic lidar measurements

机译:使用三波长弹性潮流雷达测量检索颗粒发射颗粒排放物理性质

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Agricultural operations produce a variety of particulates and gases that influence ambient air quality. Lidar (Light Detection And Ranging) technology provides a means to derive quantitative information of particulate spatial distribution and optical/physical properties over remote distances. A three-wavelength scanning lidar system built at the Space Dynamic Laboratory (SDL) is used to extract optical parameters of particulate matter and to convert these optical properties to physical parameters of particles. This particulate emission includes background aerosols, emissions from the agricultural feeding operations, and fugitive dust from the road. Aerosol optical parameters are retrieved using the widely accepted solution proposed by Klett. The inversion algorithm takes advantage of measurements taken simultaneously at three lidar wavelengths (355, 532, and 1064 nm) and allows us to estimate the particle size distribution. A bimodal lognormal particle size distribution is assumed and mode radius, width of the distribution, and total number density are estimated, minimizing the difference between calculated and measured extinction coefficients at the three lidar wavelengths. The results of these retrievals are then compared with simultaneous point measurements at the feeding operation site, taken with standard equipment including optical particle counters, portable PM_(10) and PM_(2.5) ambient air samplers, multistage impactors, and an aerosol mass spectrometer.
机译:农业运营产生各种颗粒和气体,影响环境空气质量。 LIDAR(光检测和测距)技术提供了在远程距离上导出微粒空间分布和光/物理性质的定量信息的方法。在空间动态实验室(SDL)内置的三波长扫描激光雷达系统用于提取颗粒物质的光学参数,并将这些光学性质转换为颗粒的物理参数。这种颗粒发射包括背景气溶胶,农业饲养行动排放,以及道路的逃逸灰尘。使用Klett提出的广泛接受的解决方案检索气溶胶光学参数。反转算法利用在三个激光波长(355,532和1064nm)的同时进行测量,并允许我们估计粒度分布。假设双峰逻辑粒度分布,并估计分布的半径,分布宽度和总数密度,最小化三个激光雷达波长的计算和测量的消光系数之间的差异。然后将这些检索的结果与馈电操作现场的同时测量进行比较,用标准设备拍摄,包括光学粒子计数器,便携式PM_(10)和PM_(2.5)环境空气采样器,多级撞击仪和气溶胶质谱仪。

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