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Sensitivity analysis of differential absorption lidar measurements in the mid-infrared region

机译:中红外区差分吸收激光雷达测量的灵敏度分析

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摘要

The availability of new laser sources that are tunable in the IR spectral region opens new perspectives for differential absorption lidar (DIAL) measurements. A region of particular interest is located in the near IR, where some of the atmospheric pollutants have absorption lines that permit monitoring of emissions from industrial plants and in urban areas. In DIAL measurements, the absorption lines for the species to be measured must be carefully chosen to prevent interference from other molecules, to minimize the dependence of the absorption cross section on temperature, and to optimize the measurements with respect to the optical depth. We analyze the influence of these factors and discuss a set of criteria for selecting the best pairs of wavelengths (λ_(ON) and λ_(OFF)) to be used in DIAL measurements of several molecular species (HCl, CO, CO_(2), NO_(2), CH_(4), H_(2)O, and O_(2)). Moreover, a sensitivity study has been carried out for selected lines in three different regimes: clean air, urban polluted air, and emission from an incinerator stack.
机译:在红外光谱区域可调的新激光源的可用性为差分吸收激光雷达(DIAL)测量开辟了新的前景。一个特别令人感兴趣的区域位于近红外区,那里的一些大气污染物具有吸收线,可以监测工业工厂和城市地区的排放。在DIAL测量中,必须仔细选择要测量的物质的吸收线,以防止其他分子的干扰,以最小化吸收截面对温度的依赖性,并针对光学深度优化测量。我们分析了这些因素的影响,并讨论了一组标准,用于选择用于几种分子种类(HCl,CO,CO_(2)的DIAL测量中的最佳波长对(λ_(ON)和λ_(OFF)))。 ,NO_(2),CH_(4),H_(2)O和O_(2))。此外,已经针对三种不同方案中的选定管线进行了敏感性研究:清洁空气,城市污染空气以及焚烧炉烟囱的排放。

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