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Capillary hysteresis in sloshing dynamics: AÂ weakly nonlinear analysis
Francesco Viola
, P. T. Brun
, François Gallaire
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:
Contribution to journal
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Article
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peer-review
30
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Scopus citations
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Dive into the research topics of 'Capillary hysteresis in sloshing dynamics: AÂ weakly nonlinear analysis'. Together they form a unique fingerprint.
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Keyphrases
Damping Rate
100%
Sloshing Dynamics
100%
Weakly Nonlinear Analysis
100%
Capillary Hysteresis
100%
Contact Line
75%
Contact Angle Hysteresis
50%
Inviscid
25%
Law
25%
Capillarity
25%
Limit of Zeros
25%
Multiscale Method
25%
Free Surface
25%
Viscous Damping
25%
System of Equations
25%
Wave Amplitude
25%
Wave Frequency
25%
Lamb
25%
Coulomb
25%
Water Waves
25%
Flow Restriction
25%
Fluid Mechanics
25%
Damped Oscillator
25%
Viscous Dissipation
25%
Decay Time
25%
Gravity-capillary Waves
25%
Capillary Effect
25%
Wave Motion
25%
Parkinson
25%
Solids Friction Factor
25%
Interfacial Terms
25%
Vertical Cylindrical Tank
25%
Zero Wave
25%
Unique Values
25%
Engineering
Nonlinear Analysis
100%
Contact Line
100%
Contact Angle Hysteresis
66%
Sloshing Amplitude
66%
Combined Effect
33%
Hydrodynamics
33%
Free Surface
33%
Finite Time
33%
Capillarity
33%
Decay Time
33%
Wave Motion
33%
Multiple Scale
33%
Cylindrical Tank
33%
Gravity Wave
33%
Equation System
33%
Potential Flow
33%
Empirical evidence
33%
Fluid Mechanics
33%