论文标题

飞溅研究:理论观点

Study of the splash: A theoretical perspective

论文作者

Dandekar, Raj

论文摘要

滴对液体的影响本质上是普遍存在的,并且在医疗保健,农业和工业中的一系列应用中。它们可能导致飞溅和生成二次液滴对于一系列涂层,分散或污染物问题很重要。尽管有一个多世纪的问题,但飞溅物的物理学仍然存在许多未解决的问题。我们研究了对深层液体池的降低影响后发生的事件序列。我们特别关注液体表面下方和冠的液体板形成的空气腔,该空气板形成并升到表面上方。使用组合的动量和能量分析,我们得出了空气腔的时间演变及其达到最大深度的预测。我们得出了冠的表速度曲线的表达式。我们还得出了冠的不稳定板厚度谱的表达式。利用我们在不稳定的皇冠板速度和厚度曲线上获得的知识,我们得出了冠直径和冠状高度的时间演化的分析表达式。我们还展示了如何耦合冠状和空腔径向的膨胀。本研究中采用的空腔和冠分析为传统上知道的空腔冠系统提供了新的理解,该系统始于20世纪初期的沃辛顿的开创性研究。

Impacts of drops on liquids are ubiquitous in nature and in a range of applications in healthcare, agriculture and industry. They can lead to splash and generation of secondary droplets important for a range of coating, dispersal or contaminant problems. The physics of splash, despite being more than a century old problem, still has a number of unanswered questions. We study the sequence of events occurring upon drop impact on a deep, inviscid liquid pool. We particularly focus on the air cavity formed below the liquid surface and the liquid sheet of the crown, which forms and rises above the surface. Using combined momentum and energy analyses, we derive the prediction of the temporal evolution of the air cavity and the maximum depth it reaches. We derive and an expression for the sheet velocity profile of the crown. We also derive the expression for the unsteady sheet thickness profile of the crown. Leveraging the knowledge we gained on the unsteady crown sheet velocity and thickness profiles, we derive the analytical expressions for the temporal evolution of the crown diameter and crown height. We also show how the crown and cavity radial expansions are coupled. The cavity and crown analysis employed in the present study provides a new understanding of the traditionally know cavity-crown system started in the seminal studies by Worthington in the early 20th century.

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