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Grouping and trapping of evaporating droplets in an oscillating gas flow

机译:分组和捕获振荡气流中的蒸发液滴

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摘要

A new approach to the analysis of droplet grouping in an oscillating gas flow is suggested. This is based on the investigation of droplet trajectories in the frame of reference moving with the phase velocity of the wave. Although the equations involved are relatively simple, the analysis shows distinctive characteristics of grouping and non-grouping cases. In the case of grouping, droplet trajectories converge to the points for which the ratio of flow velocity in this frame of reference and the amplitude of flow oscillations is less than 1, and the cosine of the arc sine of this ratio is positive. In the case of non-grouping, droplet trajectories in this frame of reference oscillate around the translational velocity close to the velocity of flow in the same frame of reference. The effect of droplet size on the grouping pattern is investigated. It has been pointed out that for the smaller droplets much more stable grouping is observed. The effect of droplet evaporation is studied in the limiting case when the contribution of the heat-up period can be ignored. It is shown that evaporation can lead to droplet grouping even in the case when the non-evaporating droplets are not grouped. This is related to the reduction in droplet diameter during the evaporation process. Coupling between gas and droplets is shown to decrease the grouping tendency. A qualitative agreement between predictions of the model and in-house experimental observations referring to Diesel engine sprays has been demonstrated.
机译:提出了一种分析振荡气流中液滴分组的新方法。这是基于对参考系中的液滴轨迹随波的相速度移动的研究。尽管所涉及的方程相对简单,但分析显示了分组和非分组案例的鲜明特征。在分组的情况下,液滴轨迹收敛到在该参考系中流速与流动振荡幅度之比小于1的点,并且该比率的反正弦的余弦为正。在不分组的情况下,该参考系中的液滴轨迹围绕平移速度振荡,接近于同一参考系中的流速。研究了液滴大小对分组模式的影响。已经指出,对于较小的液滴,观察到更稳定的分组。当可以忽略加热时间的影响时,在极限情况下研究液滴蒸发的影响。结果表明,即使不对非蒸发液滴进行分组,蒸发也会导致液滴分组。这与蒸发过程中液滴直径的减小有关。气体和液滴之间的耦合显示出降低了分组趋势。已经证明了该模型的预测与关于柴油机喷雾的内部实验观察之间的定性一致。

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