Crown sealing and buckling instability during water entry of spheres
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Publication:4976639
DOI10.1017/jfm.2016.165zbMath1462.76024OpenAlexW2321421745MaRDI QIDQ4976639
M. M. Mansoor, Tadd T. Truscott, Nathan B. Speirs, Sigurdur T Thoroddsen, J. O. Marston
Publication date: 1 August 2017
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/539245645a7c4effdd78d888e05af05e458cef13
Related Items (11)
Investigation of hydrodynamics of water impact and tail slamming of high-speed water entry with a novel immersed boundary method ⋮ Experiments on the breakup of drop-impact crowns by Marangoni holes ⋮ Water entry of cups and disks ⋮ Water entry of rounded cylindrical bodies with different aspect ratios and surface conditions ⋮ A two-phase mixing layer between parallel gas and liquid streams: multiphase turbulence statistics and influence of interfacial instability ⋮ Updated Lagrangian particle hydrodynamics (ULPH) modeling of solid object water entry problems ⋮ Impact of inlet gas turbulence on the formation, development and breakup of interfacial waves in a two-phase mixing layer ⋮ Submersion of impacting spheres at low Bond and Weber numbers owing to a confined pool ⋮ Crown sealing and buckling instability during water entry of spheres ⋮ The controlled vertical impact of an inclined flat plate on a quiescent water surface ⋮ Breakup of thin liquid sheets through hole–hole and hole–rim merging
Cites Work
- Destabilization of flapping sheets: the surprising analogue of soap films
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- Water entry of small hydrophobic spheres
- Impact jetting by a solid sphere
- Life of a flapping liquid sheet
- Moving Contact Lines: Scales, Regimes, and Dynamical Transitions
- Crown sealing and buckling instability during water entry of spheres
- The viscous Savart sheet
- Inertial collapse of liquid rings
- Cavity dynamics in high-speed water entry
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