Spreading dynamics of drop impacts
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Publication:5406385
DOI10.1017/jfm.2012.431zbMath1284.76021OpenAlexW2166156980MaRDI QIDQ5406385
V. Pagneux, Christophe Josserand, Guillaume Lagubeau, Marco Antonio Fontelos, Agnès Maurel, Philippe Petitjeans
Publication date: 1 April 2014
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/acb0d15adb260205ccd638ead4df49675a7c1975
Experimental work for problems pertaining to fluid mechanics (76-05) Capillarity (surface tension) for incompressible viscous fluids (76D45) Liquid-gas two-phase flows, bubbly flows (76T10)
Related Items (7)
Ice formation on a smooth or rough cold surface due to the impact of a supercooled water droplet ⋮ Drag reduction on drop during impact on multiscale superhydrophobic surfaces ⋮ Deformation upon impact of a concentrated suspension drop ⋮ Drop impact on a solid surface: short-time self-similarity ⋮ On the splashing of high-speed drops impacting a dry surface ⋮ Drop impact onto wetted walls: an unsteady analytical solution for modelling crown spreading ⋮ Mass, momentum and energy partitioning in unsteady fragmentation
Cites Work
- Experimental study on water-wave trapped modes
- Retraction dynamics of aqueous drops upon impact on non-wetting surfaces
- Effect of capillary and viscous forces on spreading of a liquid drop impinging on a solid surface
- Drop dynamics after impact on a solid wall: Theory and simulations
- The fascination of fluid mechanics
- Pyramidal and toroidal water drops after impact on a solid surface
- Normal impact of a liquid drop on a dry surface: model for spreading and receding
- Maximal deformation of an impacting drop
- Pressure-impulse theory for liquid impact problems
- Droplet-wall collisions: Experimental studies of the deformation and breakup process
- Inertia dominated drop collisions. II. An analytical solution of the Navier–Stokes equations for a spreading viscous film
- Complexities of splashing
- On the elasticity of an inertial liquid shock
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