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Dynamics of Spray Flames in Oscillating Flow with Droplet Grouping

机译:液滴分组振荡流中喷雾火焰的动力学

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The co-flow laminar spray diffusion flame in an oscillating flow field is investigated. Mild slip is permitted between the droplets and their host surroundings and droplet grouping resulting from the host flow oscillations is accounted for. The spray is modeled using the sectional approach and a perturbation analysis using a small sectional Stokes number is utilized for solving the liquid phase governing equations. The effect of droplet grouping is described through a specially constructed model for the vaporization Damkohler number. The large chemical Damkohler number assumption is adopted and a formal analytical solution is developed for Schwab-Zeldovitch parameters through which the dynamics of the spray flame front shapes and thermal fields are deduced. Computed results based on the solutions demonstrate how the phenomenon of droplet grouping can lead to the existence of multiple flame sheets as a result of the dynamic change in the type of the main homogeneous flame from under- to over-ventilated as the flow field oscillates.Concomitant fluctuating thermal fields are also shown to be present indicating a potential impact on undesirable pollutants production.
机译:研究了振荡流场中的同流层流喷雾扩散火焰。在液滴及其主体周围环境之间允许轻度滑动,并考虑了由主体流动振荡引起的液滴分组。使用分段方法对喷雾建模,并使用小截面斯托克斯数进行扰动分析来求解液相控制方程。通过特殊构造的汽化Damkohler数模型描述了液滴分组的效果。采用大的化学Damkohler数假设,并为Schwab-Zeldovitch参数开发了形式化的解析解决方案,从而推导了喷雾火焰前部形状和温度场的动力学。基于解决方案的计算结果表明,随着流场的振荡,主要均质火焰的类型从通风不足到过度通风,动态变化的结果是,液滴分组现象如何导致多个火焰片的存在。 还显示了伴随的波动热场,表明对不希望的污染物产生有潜在的影响。

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