Unstationary dynamics of drops subjected ...
Document type :
Compte-rendu et recension critique d'ouvrage
Title :
Unstationary dynamics of drops subjected to MHz-surface acoustic waves modulated at low frequency
Author(s) :
Brunet, Philippe [Auteur correspondant]
Matière et Systèmes Complexes [MSC]
Baudoin, Michael [Auteur]
Acoustique Impulsionnelle & Magnéto-Acoustique Non linéaire - Fluides, Interfaces Liquides & Micro-Systèmes - IEMN [AIMAN-FILMS - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Matière et Systèmes Complexes [MSC]
Baudoin, Michael [Auteur]

Acoustique Impulsionnelle & Magnéto-Acoustique Non linéaire - Fluides, Interfaces Liquides & Micro-Systèmes - IEMN [AIMAN-FILMS - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Journal title :
Experiments in Fluids
Pages :
34
Publisher :
Springer Verlag (Germany)
Publication date :
2022
ISSN :
0723-4864
HAL domain(s) :
Sciences de l'ingénieur [physics]
English abstract : [en]
In the present work, we investigate the unstationary dynamics of sessile droplets subjected to high-frequency surface acoustic waves modulated at a lower frequency close to the first inertio-capillary resonance mode of the ...
Show more >In the present work, we investigate the unstationary dynamics of sessile droplets subjected to high-frequency surface acoustic waves modulated at a lower frequency close to the first inertio-capillary resonance mode of the drop. Under the action of both acoustic streaming and radiation pressure, the droplet response combines (i) a directional motion and (ii) oscillations of its shape and contact-line position. The droplet oscillations and time-averaged velocity show strong dependency on the modulation frequency. While the former dependence is linked to some resonance effects (harmonic and parametric), the latter one is still an unsolved issue. To get further insight of the underlying physics, we investigate here the fast oscillating dynamics of the drop contact line and of the dynamical contact angles through high-speed and high-resolution measurements at various modulation frequency. At odds with what is predicted and measured in stationary moving contact lines, we show that the contact-line velocity exhibits complex, non-single-valued dependence with the dynamic contact angles.Show less >
Show more >In the present work, we investigate the unstationary dynamics of sessile droplets subjected to high-frequency surface acoustic waves modulated at a lower frequency close to the first inertio-capillary resonance mode of the drop. Under the action of both acoustic streaming and radiation pressure, the droplet response combines (i) a directional motion and (ii) oscillations of its shape and contact-line position. The droplet oscillations and time-averaged velocity show strong dependency on the modulation frequency. While the former dependence is linked to some resonance effects (harmonic and parametric), the latter one is still an unsolved issue. To get further insight of the underlying physics, we investigate here the fast oscillating dynamics of the drop contact line and of the dynamical contact angles through high-speed and high-resolution measurements at various modulation frequency. At odds with what is predicted and measured in stationary moving contact lines, we show that the contact-line velocity exhibits complex, non-single-valued dependence with the dynamic contact angles.Show less >
Language :
Anglais
Popular science :
Non
Source :