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Laser diagnostics of trace species in low-pressure flat flame

机译:低压平焰中痕量物质的激光诊断

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Laser-based diagnostic methods can measure the absolute concentrations of various atoms and molecules, even at low concentrations. They can also measure temperature with high accuracy. One very important advantage of these methods is the ability to make measurements without affecting the studied process, for example flame. Laser-based spectroscopy can thus provide important information for the validation of chemical mechanisms in well-defined, low-pressure flat flames. This paper reviews several methods: laser-induced fluorescence, cavity ring-down spectroscopy, intracavity laser absorption spectroscopy, and polarization spectroscopy. All four are sufficiently sensitive to measure the concentrations of trace species in low-pressure flat flames. The complementarity of the methods for combustion diagnostics is also discussed.
机译:基于激光的诊断方法甚至可以测量低浓度下各种原子和分子的绝对浓度。他们还可以高精度测量温度。这些方法的一个非常重要的优点是能够在不影响所研究过程(例如火焰)的情况下进行测量。因此,基于激光的光谱学可以为验证定义明确的低压平焰中的化学机理提供重要信息。本文概述了几种方法:激光诱导荧光,腔衰荡光谱,腔内激光吸收光谱和偏振光谱。这四个都足够灵敏,可以测量低压平焰中痕量物质的浓度。还讨论了燃烧诊断方法的互补性。

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