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SOOT FORMATION IN UNSTRAINED DIFFUSION FLAMES

机译:无约束扩散火焰中的烟尘形成

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The formation of soot particles has been investigated in CH4/O-2 diffusion flames using a unique burner design, which allows the creation of a nearly unstrained planar reaction sheet. Spatially resolved soot volume fractions were obtained using laser-induced incandescence. These soot measurements and the sooting limits were obtained as a function of bulk flow across the flame and mixture strength. Samples were collected using thermophoretic sampling and analyzed using electron microscopy, revealing a broad range of microstructures including particles with unusually large primary diameters and carbon nanotubes. A theoretical model is presented, which confirms that under certain conditions the 1D nature of the flow field of the burner and the strong adverse temperature gradient on the fuel side of the flame result in the soot particles being held in place by thermophoretic forces and allowed to grow for very long time periods. Some of these so-called super aggregates reached sizes of tens of microns and became visible to the naked eye in the soot layer.
机译:已经使用独特的燃烧器设计在CH4 / O-2扩散火焰中研究了烟尘颗粒的形成,该燃烧器设计允许创建几乎不变形的平面反应片。使用激光诱导的白炽获得空间分辨的烟灰体积分数。这些烟尘测量和烟尘极限是通过火焰的总流量和混合物强度的函数。使用热泳采样收集样品,并使用电子显微镜进行分析,揭示了广泛的微观结构,包括具有异常大的初生直径的颗粒和碳纳米管。提出了一个理论模型,该模型证实了在某些条件下,燃烧器流场的一维性质和火焰燃料侧上的强烈不利温度梯度会导致烟灰颗粒通过热泳力保持在原位,并允许生长很长一段时间。这些所谓的超级聚集体中的一些达到了数十微米的大小,并且在烟灰层中用肉眼可见。

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