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Aglite Lidar: Calibration and Retrievals of Well Characterized Aerosols from Agricultural Operations Using a Three-Wavelength Elastic Lidar

机译:Aglite激光雷达:使用三波长弹性激光雷达对农业生产中表征良好的气溶胶进行标定和取回

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摘要

Lidar (LIght Detection And Ranging) provides the means to quantitatively evaluate the spatial and temporal variability of particulate emissions from agricultural activities. AGLITE is a three-wavelength portable scanning lidar system built at the Space Dynamic Laboratory (SDL) to measure the spatial and temporal distribution of particulate concentrations around an agricultural facility. The retrieval algorithm takes advantage of measurements taken simultaneously at three laser wavelengths (355, 532, and 1064 nm) to extract particulate optical parameters, convert these parameters to volume concentration, and estimate the particulate mass concentration of a particulate plume. The quantitative evaluation of particulate optical and physical properties from the lidar signal is complicated by the complexity of particle composition, particle size distribution, and environmental conditions such as heterogeneity of the ambient air conditions and atmospheric aerosol loading. Additional independent measurements of particulate physical and chemical properties are needed to unambiguously calibrate and validate the particulate physical properties retrieved from the lidar measurements. The calibration procedure utilizes point measurements of the particle size distribution and mass concentration to characterize the aerosol and calculate the aerosol parameters. Once calibrated, the Aglite system is able to map the spatial distribution and temporal variation of the particulate mass concentrations of aerosol fractions such as TSP, PM10, PM2.5, and PM1. This ability is of particular importance in the characterization of agricultural operations being evaluated to minimize emissions and improve efficiency, especially for mobile source activities.
机译:激光雷达(光检测和测距)提供了定量评估农业活动颗粒物排放的时空变化的方法。 AGLITE是在空间动力实验室(SDL)上构建的三波长便携式扫描激光雷达系统,用于测量农业设施周围颗粒物浓度的时空分布。检索算法利用在三个激光波长(355、532和1064 nm)上同时进行的测量来提取颗粒光学参数,将这些参数转换为体积浓度,并估算颗粒羽流的颗粒质量浓度。激光雷达信号对颗粒光学和物理性质的定量评估由于颗粒成分,粒度分布和环境条件(例如周围空气条件和大气气溶胶负载的不均匀性)的复杂性而变得复杂。需要额外的颗粒物理和化学性质的独立测量值,以明确地校准和验证从激光雷达测量结果中获得的颗粒物理性质。校准程序利用粒度分布和质量浓度的点测量来表征气溶胶并计算气溶胶参数。校准后,Aglite系统能够绘制气溶胶馏分(例如TSP,PM10,PM2.5和PM1)的颗粒质量浓度的空间分布和时间变化。这种能力对于评估农业活动的特性特别重要,可以最大程度地减少排放并提高效率,特别是对于移动源活动而言。

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