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Droplet impact on flowing liquid films with inlet forcing: the splashing regime

机译:液滴对流动液体薄膜的液滴冲击:溅制

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摘要

The impact process of droplets falling obliquely on thin flowing films is studied using a high-speed imaging system with a focus on splashing. Frequency-forcing of the flow rate at the inlet is applied in order to form solitary waves prior to droplet impact. The outcomes associated with impact on targeted regions of the waves are examined; these include the capillary wave region preceding the large wave peak, the flat film region, and the wave hump region. The effect of varying the film flow rate, droplet size, and speed on the splashing regime for each of these regions is elucidated. The results are further compared with those associated with uncontrolled flowing films, and with quiescent films. The present work has demonstrated, for the first time, the contribution made by the spatial structure of waves to the outcome of droplet impact on flowing films.
机译:使用高速成像系统研究了侧倾在薄流薄膜上的液滴的冲击过程,具有焦点溅。施加入口处的流速的频率锻炼以在液滴冲击之前形成孤立波。检查了与波浪的目标区域的影响相关的结果;这些包括前面的大波峰,平面膜区域和波驼峰区域之前的毛细波区域。阐明了改变薄膜流速,液滴尺寸和速度对这些区域中的每一个的溅射制度上的效果。结果与与不受控制的流动膜相关的结果相比,以及静止膜。这项工作首次证明了通过波浪的空间结构对流动薄膜的液滴产生的结果进行的贡献。

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