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Soret effects in laminar counterflow spray diffusion flames

机译:层流逆流喷雾扩散火焰中的索特效应

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The impact of vapour-phase Ludwig-Soret effects on the structure of steady laminar counterflow spray diffusion flames is investigated numerically using complex chemistry and multicomponent molecular transport laws of Chapman-Enskog kinetic theory. These Ludwig-Soret effects, which tend to drive light molecular species towards hot regions and heavy molecular species towards cold regions of the flow, not only influence streamwise diffusion within the planar diffusion flame structure, but also the structure of the fuel vapour diffusion boundary layer near each suspended fuel droplet. Our numerical results provide a quantitative assessment of the impact of Ludwig-Soret effects on the flame structures and on droplet boundary layer structures for typical experimental flames. Computationally, Ludwig-Soret effects are found to vary from being negligible for the experiments considered with nitrogen as the diluent to decreasing the peak temperature by nearly 125 K for the experiment considered with helium as th e diluent. In addition, Ludwig-Soret effects do not significantly influence vaporization rates in the zones where the vaporization process is fully developed. Only the droplet boundary layer structure is modified with higher surface fuel vapour concentrations approximately compensating reduced fuel diffusion around the droplet.
机译:利用Chapman-Enskog动力学理论的复杂化学和多组分分子输运规律,研究了气相相路德维希-索雷特效应对稳定层流逆流喷雾扩散火焰结构的影响。这些Ludwig-Soret效应趋向于将轻分子种类推向流的热区,将重分子种类推向流的冷区,不仅影响平面扩散火焰结构内的流向扩散,而且影响燃料蒸气扩散边界层的结构。靠近每个悬浮的燃料滴。我们的数值结果可定量评估路德维希-苏雷特效应对典型实验火焰的火焰结构和液滴边界层结构的影响。通过计算,发现路德维希-苏雷特效应从以氮气为稀释剂的实验可以忽略不计,到以氦气为稀释剂的实验将峰值温度降低了近125K。另外,Ludwig-Soret效应在汽化过程完全展开的区域中不会显着影响汽化速率。仅液滴边界层结构被较高的表面燃料蒸汽浓度改性,从而大致补偿了燃料在液滴周围的扩散减少。

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