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Determination of soot scattering coefficient from extinction and three-angle scattering in a laminar diffusion flame

机译:由层流扩散火焰中的消光和三角散射确定烟尘散射系数

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The total scattering coefficient is determined from three multiangle scattering measurements at different heights above the burner in a nonsooting laminar ethylene diffusion flame. The local extinction coefficient is determined from multichord extinction measurements. The above analysis quantifies the contribution from scattering to extinction without knowledge of the soot primary particle diameter or the morphology of the aggregates, and the absorption coefficient can now be determined. The primary particle diameter, the number density of primary particles, the average number of primary particles in an aggregate, and the width of the lognormal distribution function for the number of primary particles in an aggregate are calculated using the absorption coefficient and assumed constant values for the fractal dimension, the fractal prefactor, and the complex refractive index for soot. The values for the primary particle diameter obtained from the in situ measurements in this study compare well with those obtained from transmission electron microscopic measurements of thermophoretically sampled soot aggregates in a previous study at all heights in the diffusion flame, while the calculated soot structure parameters compare well with previous studies only at heights between 30 and 50 mm above the burner.
机译:总散射系数由不发烟的层状乙烯扩散火焰中燃烧器上方不同高度处的三个多角度散射测量值确定。局部消光系数由多弦消光测量确定。上述分析量化了从散射到消光的贡献,而无需了解碳黑一次粒径或聚集体的形态,现在可以确定吸收系数。使用吸收系数和假定的常数可计算出一次粒径,一次粒子的数量密度,一次粒子的平均数量,以及一次粒子的数量的对数正态分布函数的宽度。分形维数,分形因子和烟灰的复数折射率。从这项研究中的原位测量获得的初级粒径值与先前研究中在扩散火焰中所有高度的热电泳采样的烟灰团聚体的透射电子显微镜测量值相当,而计算出的烟灰结构参数相比以前的研究仅在燃烧器上方30至50毫米的高度进行了很好的研究。

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