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Drop fragment distributions under shear with inertia
Y. Renardy,
V. Cristini
, J. Li
Houston Methodist
Research output
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Contribution to journal
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Article
›
peer-review
50
Scopus citations
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Keyphrases
Inertia
100%
Fragment Distribution
100%
Drop Size Distribution
100%
Three-dimensional (3D)
50%
Reynolds number
50%
Viscosity
50%
Large Fragment
50%
Numerical Investigation
50%
Monodisperse
50%
Interfacial Tension
50%
Volume of Fluid
50%
Semi-implicit
50%
Surface Stress
50%
Computational Domain
50%
Fragment Size Distribution
50%
Full Navier-Stokes Equations
50%
Simple Shear
50%
Neck Region
50%
Drop Volume
50%
Capillary number
50%
Stokes Flow
50%
Stress Formulation
50%
Viscous Liquid
50%
Inertia Effect
50%
Stokes Solver
50%
Sideslip
50%
Flow Strength
50%
Dumbbell
50%
Critical Capillary number
50%
No-slip Condition
50%
Spatial Periodicity
50%
Spawning
50%
Continuous Surface Force
50%
Engineering
Critical Size
100%
Critical Volume
100%
Capillary Number
100%
Drop Size
100%
Reynolds' Number
50%
Navier-Stokes Equation
50%
Fluid Viscosity
50%
Experimental Observation
50%
Computational Domain
50%
Simple Shear
50%
Stress Formulation
50%
No Slip Condition
50%
Bottom Wall
50%
Flow Strength
50%
Neck Region
50%