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Peak soot temperature in laser-induced incandescence measurements

机译:激光诱导白炽灯测量中的烟灰峰值温度

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In order to understand the processes involved in the laser-induced incandescence (LII) technique, the value of soot temperature at the peak of the incandescence signal has been studied. To this purpose, an absolute two-color LII technique has been applied on ethylene and methane diffusion flames, based on the comparison with a calibrated tungsten ribbon lamp. The dependence of peak temperature on the fluence has been investigated by using a sharply edged probe beam. Above a certain fluence threshold a value close to 4000 K was obtained for both flames at all locations, that means in largely different soot conditions. At a suitably selected laser fluence, radial and axial profiles of peak soot temperature and volume fraction were performed. Soot volume fraction data have been validated with results from laser extinction technique measurements. The quite low values observed for methane prove the sensitivity of the LII technique. Moreover, a discussion about soot refractive index is presented. In the visible region a test of its influence on both soot volume fraction and soot peak temperature was carried out, while in the infrared the heating process was analyzed.
机译:为了了解涉及激光诱导白炽灯(LII)技术的过程,已经研究了白炽灯信号峰值处的烟so温度值。为此,基于与校准的钨带灯的比较,绝对二色LII技术已应用于乙烯和甲烷扩散火焰。峰值温度对注量的依赖性已经通过使用锋利的探测光束进行了研究。在一定的注量阈值之上,在所有位置的两个火焰都获得了接近4000 K的值,这意味着在非常不同的烟灰条件下。在适当选择的激光能量密度下,进行了烟灰峰值温度和体积分数的径向和轴向分布图。烟尘体积分数数据已通过激光消光技术测量的结果进行了验证。甲烷的极低值证明了LII技术的敏感性。此外,提出了关于烟ot折射率的讨论。在可见光区域,测试了其对烟灰体积分数和烟灰峰值温度的影响,而在红外线中,分析了加热过程。

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