论文标题

液体混乱和润湿性对滴水碰撞产生的结构的影响

Influence of liquid miscibility and wettability on the structures produced by drop-jet collisions

论文作者

Baumgartner, David, Bernard, Ronan, Weigand, Bernhard, Lamanna, Grazia, Brenn, Guenter, Planchette, Carole

论文摘要

实验研究了滴水流与不同液体的连续射流之间的碰撞。与以前的研究相反,我们的工作集中于液体混溶性和润湿性对碰撞结果的影响。因此,使用提供全部润湿和部分润湿的混杂和不混溶的液体。我们表明,只要射流表面张力小于滴表面张力,滴水就可以用射流封装,从而提供所谓的射流液滴结构。不同机制之间的过渡在本质上仍然相似,毛细管碎片负责喷射破裂和惯性碎片化,从而导致滴(然后可能是射流)分解。文献中提出的用于建模惯性碎片阈值的无量纲数不会带来以相同临界值的不同液体获得的结果。我们通过对碰撞的详细分析,掉落和喷气扩展及其动力学来解释原因。发现滴碎片在后坐力阶段发生,导致我们提出了一个新的无量纲参数,该参数成功地再现了我们用不混溶液体获得的所有实验数据。最后,我们证明了碰撞结果的最大变化是通过使用完全湿射流的液滴产生的。在这种情况下,无法实现滴剂的封装,这是基于固定滴水结构的固化对某些应用的真正限制。

Collisions between a stream of drops and a continuous jet of a different liquid are experimentally investigated. In contrast to previous studies, our work focuses on the effects of liquid miscibility and wettability on the collision outcomes. Thus, miscible and immiscible liquids providing total and partial wetting are used. We show that, as long as the jet surface tension is smaller than the drop surface tension, the drops can be encapsulated by the jet, providing the so-called drops-in-jet structure. The transitions between the different regimes remain similar in nature with a capillary fragmentation responsible for the jet break-up and an inertial fragmentation causing the drops (and then possibly the jet) to break up. The dimensionless numbers proposed in the literature to model the inertial fragmentation thresholds do not bring the results obtained with different liquids at the same critical value. We explain the reason via a detailed analysis of the collisions, accounting for the drop and jet extensions and their kinetics. The drop fragmentation is found to occur during the recoil phase, leading us to propose a new dimensionless parameter that successfully reproduced all our experimental data obtained with immiscible liquids. Finally we demonstrate that the most dramatic change of the collision outcomes is produced by using drops that totally wet the jet. In this case, the encapsulation of the drops cannot be achieved, constituting a true limit to some applications based on the solidification of the drops-in-jet structure.

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