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Investigation of droplet combustion in strained counterflow diffusion flames using planar laser-induced fluorescence

机译:利用平面激光诱导荧光研究逆流扩散火焰中液滴的燃烧

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Experimental investigation of an isolated droplet burning in a convective flow is reported. Acetone droplets were injected in a steady laminar diffusion counterflow flame operating with methane. Planar laser-induced fluorescence measurements applied to OH radical and acetone was used to measure the spatial distribution of fuel vapour and the structure of the flame front around the droplet. High-magnification optics was used in order to image flow areas with a ratio of 1 : 1.2. The different combustion regimes of an isolated droplet could be observed from the configuration of the envelope flame to that of the boundary-layer flame, and occurrence of these regimes was found to depend on the droplet Reynolds number. Experimental results were compared with ID numerical simulations using detailed chemistry for the configuration of the envelope flame. Good agreement was obtained for the radial profile of both OH radical and fuel vapour. Influence of droplet dynamics on the counterflow flame front was also investigated. Results show that the flame front could be strongly distorted by the droplet crossing. In particular, droplets with high velocity led to local extinction of the flame front whereas droplets with low velocity could ignite within the flame front and burn on the oxidiser side.
机译:报告了对流中燃烧的孤立液滴的实验研究。将丙酮液滴注入稳定的层流扩散逆流火焰中,该火焰与甲烷一起操作。应用于OH自由基和丙酮的平面激光诱导的荧光测量用于测量燃料蒸气的空间分布以及液滴周围的火焰前沿结构。使用高倍率光学器件来以1:1.2的比率成像流动区域。从包络火焰的结构到边界层火焰的结构,可以观察到隔离液滴的不同燃烧方式,发现这些燃烧方式的发生取决于液滴的雷诺数。实验结果与ID数值模拟进行了比较,ID数值模拟使用了详细的化学方法对包络火焰进行了配置。 OH自由基和燃料蒸气的径向分布都获得了很好的一致性。还研究了液滴动力学对逆流火焰前沿的影响。结果表明,液滴的穿越会严重扭曲火焰前锋。特别是,高速液滴会导致火焰前沿的局部熄灭,而低速液滴可能会在火焰前沿内点燃并在氧化剂侧燃烧。

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