Physics of Fluids · 2005 · 76 citations · 22 references
EngineeringImpact (Mechanics)MechanicsFluid MechanicsMechanical EngineeringCivil EngineeringMillimetric DropsHigh-speed Video CameraExperimental StudyWettingRheologyHorizontal PlateLiquid-liquid FlowFluid-solid InteractionCapillarity PhenomenonDisperse FlowMultiphase Flow
The behavior of millimetric drops rising in water and bouncing under a horizontal plate is studied using a high-speed video camera. The position and velocity of the center of mass of the drops, as well as their deformation are analyzed. The bouncing is found to be very dissipative, almost 80% of the energy being lost during the interaction with the wall. The deformation of the drop is governed by the balance between its inertia and capillary effects and evolve like a dissipative mass-spring system. The coefficient of restitution is compared to previous experiments done for drops in air, bubbles in water as well as solid spheres in various fluids.
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Measurements of the collision properties of small spheres
Samuel F. Foerster, Michel Louge, Hongder Chang et al. · Physics of Fluids · 1994 · 534 citations
Denis Richard, David Quéré · Europhysics Letters (EPL) · 2000 · 486 citations
Bouncing motion of spherical particles in fluids
Philippe Gondret, Michel Lance, Luc Petit · Physics of Fluids · 2002 · 381 citations · Full text
Engineering, Physics, Mechanics +12