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Bubble deformation by a turbulent flow
Stéphane Perrard
, Aliénor Rivière
, Wouter Mostert
,
Luc Deike
Mechanical & Aerospace Engineering
Civil & Environmental Engineering
High Meadows Environmental Institute
Princeton Materials Institute
Research output
:
Contribution to journal
›
Review article
›
peer-review
50
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Scopus citations
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Keyphrases
Air-to-ground
25%
Background Flow
25%
Bubble Deformation
100%
Bubble Lifetime
50%
Bubble Oscillation
25%
Bubble Surface
25%
Deformation Mode
25%
Direct numerical Simulation
50%
Forcing Term
25%
High Density
25%
High Weber number
25%
Incompressible Navier-Stokes Equations
25%
Inertial Force
50%
Inertial Surface
25%
Interface Deformation
25%
Low Density
25%
Model Prediction
25%
Pressure Fluctuation
25%
Rayleigh Mode
25%
Small Deformation
25%
Spherical Bubble
25%
Spherical Harmonics Decomposition
25%
Surface Deformation
25%
Surface Tension
25%
Surface Tension Force
25%
Temporal Regimes
25%
Transition Time
25%
Turbulence Statistics
25%
Turbulent Flow
100%
Turbulent Fluctuation
25%
Turbulent Velocity Fluctuations
25%
Velocity Fluctuation
25%
Voronoi Decomposition
25%
Water Density
25%
Weber number
25%
Engineering
Density Ratio
33%
Direct Numerical Simulation
66%
Harmonics
33%
Inertial Force
66%
Interfacial Tension
33%
Model Prediction
33%
Navier-Stokes Equation
33%
Pressure Fluctuation
33%
Small Deformation
33%
Surface Deformation
33%
Surface Tension Force
33%
Tension Surface
33%
Turbulent Flow
100%
Turbulent Velocity Fluctuation
33%
Velocity Fluctuation
33%
Physics
Direct Numerical Simulation
66%
Harmonics
33%
Interfacial Tension
66%
Navier-Stokes Equation
33%
Small Deformation
33%
Tension Surface
66%
Turbulent Flow
100%
Earth and Planetary Sciences
Harmonics
33%
Navier-Stokes Equation
33%
Numerical Simulation
66%
Surface Deformation
33%
Tension Surface
66%
Turbulent Flow
100%