论文标题
在撞击和无柄液滴合并期间的表面喷气机和内部混合
Surface jets and internal mixing during the coalescence of impacting and sessile droplets
论文作者
论文摘要
在表面张力显着的状态下,在实验中研究了无柄液滴和随后沉积的液滴(具有相同表面张力或不同表面张力的效果)的内部动力学。两种颜色的高速相机用于通过在撞击液滴中添加惰性染料来同时捕获侧面和底部视图的快速内部流动和相关的混合。鉴于相同表面张力的液滴之间的足够横向分离,在合并的液滴的顶部确定了坚固的表面射流。图像处理表明,该射流是由冲击惯性和固定接触线引起的表面流的结果。通过引入合并液滴之间的表面张力差异,可以通过Marangoni流动增强或抑制表面射流。还考虑了初始液滴构型和相对表面张力对长期动力学和混合效率的影响,以及对新兴应用(例如反应性喷墨打印)的影响。
The internal dynamics during the coalescence of a sessile droplet and a subsequently deposited impacting droplet, with either identical or distinct surface tension, is studied experimentally in the regime where surface tension is dominant. Two color high-speed cameras are used to capture the rapid internal flows and associated mixing from both side and bottom views simultaneously by adding an inert dye to the impacting droplet. Given sufficient lateral separation between droplets of identical surface tension, a robust surface jet is identified on top of the coalesced droplet. Image processing shows this jet is the result of a surface flow caused by the impact inertia and an immobile contact line. By introducing surface tension differences between the coalescing droplets, the surface jet can be either enhanced or suppressed via a Marangoni flow. The influence of the initial droplet configuration and relative surface tension on the long-term dynamics and mixing efficiency, plus the implications for emerging applications such as reactive inkjet printing, are also considered.