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Soot Volume fraction and particle size measurements with laser-induced incandescence

机译:激光诱导白炽度的烟尘体积分数和粒径测量

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摘要

Laser-induced incandescence from soot was analyzed with a time-dependent, numerical model of particle heating and cooling processes that includes spatial and temporal intensity profiles associated with laser sheet illumination. For volume fraction measurements, substantial errors result primarily from changes in gas temperature and primary soot particle size. The errors can be reduced with the proper choice of detection wavelength, prompt gating, and high laser intensities. Two techniques for primary particle size measurements, based on ratios of laser-induced incandescence signals from a single laser pulse, were also examined. Compared with the ratio of two integration times, the newly proposed ratio of two detection wavelengths is better suited for simultaneous volume fraction and size measurements, because it is less temperature sensitive and produces stronger signals with, however, a lower sensitivity to size changes. # 1997 Optical Society of America
机译:使用与时间相关的颗粒加热和冷却过程的数值模型分析了烟尘产生的激光白炽现象,该模型包括与激光薄片照明相关的时空强度分布图。对于体积分数测量,主要的误差主要是由气体温度和一次烟灰粒径的变化引起的。误差可以用检测波长,提示选通和高激光强度的适当选择被降低。还检查了两种基于单个激光脉冲的激光诱导白炽信号比率进行的初级粒度测量技术。与两个积分时间的比率相比,新提出的两个检测波长的比率更适合于同时进行体积分数和尺寸测量,因为它对温度的敏感性较低,并产生较强的信号,但对尺寸变化的敏感性较低。 #1997美国眼镜学会

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