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A tiny air bubble can be entrapped at the bottom of a solid sphere that impacts onto a liquid pool. The bubble forms due to the deformation of the liquid surface by a local pressure buildup inside the surrounding gas, as also observed…

Fluid Dynamics · Physics 2023-07-19 Wilco Bouwhuis , Maurice H. W. Hendrix , Devaraj van der Meer , Jacco H. Snoeijer

Using high-speed photography coupled with optical interference, we experimentally study the air entrapment during a liquid drop impacting a solid substrate. We observe the formation of a compressed air film before the liquid touches the…

Fluid Dynamics · Physics 2013-02-01 Yuan Liu , Peng Tan , Lei Xu

When a drop impacts a solid substrate or a thin liquid film, a thin gas disc is entrapped due to surface tension, the gas disc retracts into one or several bubbles. While the evolution of the gas disc for impact on solid substrate or film…

Fluid Dynamics · Physics 2025-12-09 Pierre-Antoine Maës , Alidad Amirfazli , Christophe Josserand

We have detected unique hydrodynamic topology in thin air film surrounding the central air dimple formed during drop impact on an immiscible liquid pool. The pattern resembles spinodal and finger-like structures typically found in various…

Fluid Dynamics · Physics 2022-05-25 Durbar Roy , Sophia M , Srinivas Rao S , Saptarshi Basu

The onset of air entrainment by a smooth vertical liquid jet impacting a pool of the same liquid has been experimentally determined. The ranges of parameters covered complement those considered by Lin & Donnelly (1969). The influence of the…

Fluid Dynamics · Physics 2024-02-28 Alain Cartellier , Juan Lasheras

A drop impacting a solid surface with sufficient velocity will emit many small droplets creating a splash. However, splashing is completely suppressed if the surrounding gas pressure is lowered. The mechanism by which the gas affects…

Fluid Dynamics · Physics 2015-05-30 Michelle M. Driscoll , Sidney R. Nagel

The impact of droplets on a liquid pool is ubiquitous in nature and important in many industrial applications. A droplet impacting on a liquid pool can result in the pinch-off of a regular bubble or entrap a large bubble under certain…

Fluid Dynamics · Physics 2023-01-18 Zhigang Xu , Tianyou Wang , Zhizhao Che

At impact of a liquid drop on a solid surface an air bubble can be entrapped. Here we show that two competing effects minimize the (relative) size of this entrained air bubble: For large drop impact velocity and large droplets the inertia…

The non-linear interaction between air and a water droplet just prior to high-speed impingement on a surface is a phenomenon that has been researched extensively and occurs in a number of industrial settings. The role that surface…

Fluid Dynamics · Physics 2021-10-07 Nathaniel I. J. Henman , Frank T. Smith , Manish K. Tiwari

Wave slamming onto a structure is often accompanied by the entrapment of an air pocket. A large scale impact typically has a rapidly evolving and disturbed liquid-gas interface, such that several bubbles are entrapped upon impact. While it…

Fluid Dynamics · Physics 2022-07-01 Utkarsh Jain , Devaraj van der Meer

The presence of ambient air in liquid-slamming events plays a crucial role in influencing the shape of the liquid surface prior to the impact, and the distribution of loads created upon impact. We study the effect of trapped air on impact…

Fluid Dynamics · Physics 2021-10-18 Utkarsh Jain , Patricia Vega-Martínez , Devaraj van der Meer

Air entrainment can occur when a water jet impacts a water/air interface, a process central in various real systems, ranging from dam spills to breaking waves. Despite its prevalence, a comprehensive description of the mechanism controlling…

Fluid Dynamics · Physics 2026-05-13 Théophile Gaichies , Arnaud Antkowiak , Anniina Salonen , Emmanuelle Rio

The oblique impact of a liquid droplet onto a deep liquid pool is studied numerically with the adaptive volume-of-fluid solver Basilisk. The splashing threshold, cavity formation, cavity evolution and the maximum cavity dimensions are…

Fluid Dynamics · Physics 2019-03-22 Sten A. Reijers , Bo Liu , Detlef Lohse , Hanneke Gelderblom

We use ultra-high-speed video imaging to look at the initial contact of a drop impacting onto a liquid layer. We observe experimentally the vortex street and the bubble-ring entrapments predicted numerically, for high impact velocities, by…

Fluid Dynamics · Physics 2013-05-01 M. -J. Thoraval , K. Takehara , T. G. Etoh , S. T. Thoroddsen

The macroscopic dynamics of a droplet impacting a solid is crucially determined by the intricate air dynamics occurring at the vanishingly small length scale between droplet and substrate prior to direct contact. Here we investigate the…

Fluid Dynamics · Physics 2021-06-18 Utkarsh Jain , Anais Gauthier , Detlef Lohse , Devaraj van der Meer

As the liquid jet plunges into a free surface, significant air is entrained into the water and forms air pockets. These air pockets eventually break up into small bubbles, which travel downstream to form a bubbly wake. To better understand…

Fluid Dynamics · Physics 2011-10-19 Chao-Tsung Hsiao , Jingsen Ma , Xiongjun Wu , Georges L. Chahine

Drops impacting on a surface are ubiquitous in our everyday experience. This impact is understood within a commonly accepted hydrodynamic picture: it is initiated by a rapid shock and a subsequent ejection of a sheet leading to beautiful…

A jet of water entering into a pool of the same liquid can generate air entrainment and form bubbles that rapidly raise to the surface and disintegrate. Here we report the equivalent phenomenon produced by a plunging dry granular jet, so…

Fluid Dynamics · Physics 2019-12-10 A. M. Cervantes-Alvarez , Y. Y. Escobar-Ortega , A. Sauret , F. Pacheco-Vazquez

We study drop impacts on immiscible viscous liquid pool and investigate the formation of droplet surface craters using experimental and theoretical analysis. We attribute the formation of air craters to the rapid deceleration of the droplet…

Fluid Dynamics · Physics 2023-02-01 Durbar Roy , Sophia M , Saptarshi Basu

Droplet atomization through aerobreakup is omnipresent in various natural and industrial processes. Atomization of Newtonian droplets is a well-studied area; however, non-Newtonian droplets have received less attention despite their…

Fluid Dynamics · Physics 2022-06-01 Navin Kumar Chandra , Shubham Sharma , Saptarshi Basu , Aloke Kumar
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