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Determining aerosol particle size distributions using time-resolved laser-induced incandescence

机译:使用时间分辨激光诱导白炽灯测定气溶胶粒径分布

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The particle size distribution within an aerosol containing refractory nanoparticles can be inferred using time-resolved laser-induced incandescence (TR-LII). In this procedure, a small volume of aerosol is heated to incandescent temperatures by a short laser pulse, and the incandescence of the aerosol particles is then measured as they return to the ambient gas temperature by conduction heat transfer. Although the cooling rate of an individual particle depends on its volume-to-area ratio, recovering the particle size distribution from the observed temporal decay of the LII signal is complicated by the fact that the LII signal is due to the incandescence of all particle size classes within the sample volume, and because of this, the particle size distribution is related to the time-resolved LII signal through a mathematically ill-posed equation. This paper reviews techniques proposed in the literature for recovering particle size distributions from TR-LII data. The characteristics of this problem are then discussed in detail, with a focus on the effect of ill-posedness on the stability and uniqueness of the recovered particle size distributions. Finally, the performance of each method is evaluated and compared based on the results of a perturbation analysis.
机译:可以使用时间分辨的激光诱导白炽灯(TR-LII)来推断包含耐火纳米粒子的气溶胶中的粒径分布。在该程序中,通过短的激光脉冲将少量的气溶胶加热到白炽温度,然后在气溶胶颗粒通过传导热传递返回到环境气体温度时测量其白炽度。尽管单个粒子的冷却速率取决于其体积与面积之比,但由于LII信号是所有粒径的白炽灯所致,因此从观察到的LII信号的时间衰减中恢复粒径分布非常复杂。因此,粒径分布与数学上不适定的方程与时间分辨的LII信号有关。本文回顾了文献中提出的用于从TR-LII数据中恢复粒径分布的技术。然后,将详细讨论该问题的特征,重点是不适定性对回收粒径分布的稳定性和唯一性的影响。最后,根据摄动分析的结果评估和比较每种方法的性能。

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