The transient spread of a circular liquid jet and hydraulic jump formation
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Publication:5100083
DOI10.1017/jfm.2022.670OpenAlexW4293051611MaRDI QIDQ5100083
Abdelkader Baayoun, Roger E. Khayat, Yun-Peng Wang
Publication date: 29 August 2022
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2022.670
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Cites Work
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- Volume of fluid (VOF) method for the dynamics of free boundaries
- A continuum method for modeling surface tension
- Harmonic solutions for polygonal hydraulic jumps in thin fluid films
- Influence of inertia, topography and gravity on transient axisymmetric thin-film flow
- Liquid film on an unsteady stretching surface
- ENHANCEMENTS OF THE SIMPLE METHOD FOR PREDICTING INCOMPRESSIBLE FLUID FLOWS
- Similarity solutions of the two-dimensional unsteady boundary-layer equations
- A stationary circular hydraulic jump, the limits of its existence and its gasdynamic analogue
- Influence of inertia, gravity, and substrate topography on the two-dimensional transient coating flow of a thin Newtonian fluid film
- Inertia dominated thin-film flows over microdecorated surfaces
- The standing hydraulic jump: theory, computations and comparisons with experiments
- Shallow-water approach to the circular hydraulic jump
- The hydraulic jump in a viscous laminar flow
- The influence of surface tension on the circular hydraulic jump
- Developed liquid film passing a trailing edge under the action of gravity and capillarity
- On the origin of the circular hydraulic jump in a thin liquid film
- Laminar spread of a circular liquid jet impinging axially on a rotating disc
- The role of gravity in the prediction of the circular hydraulic jump radius for high-viscosity liquids
- Integral methods for shallow free-surface flows with separation
- THE CONSTRUCTION OF SPECIAL EXPLICIT SOLUTIONS OF THE BOUNDARY-LAYER EQUATIONS. UNSTEADY FLOWS
- Unsteady flow about a sphere at low to moderate Reynolds number. Part 2. Accelerated motion
- Steady circular hydraulic jump on a rotating disk
- The influence of heating on liquid jet spreading and hydraulic jump
- Planar hydraulic jumps in thin film flow
- Impinging jet flow and hydraulic jump on a rotating disk
- Thin-film flow of a viscoelastic fluid on an axisymmetric substrate of arbitrary shape
- The radial spread of a liquid jet over a horizontal plane
- Impinging planar jet flow on a horizontal surface with slip
- The Navier-Stokes Equations
- An experimental investigation of the stability of the circular hydraulic jump
- Circular hydraulic jumps: where does surface tension matter?
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