We study the linear stability of a laterally extended flat two-layer liquid film under the influence of external vertical vibration. The first liquid layer rests on a vibrating solid plate and is overlaid by a second layer of immiscible fluid with deformable upper surface. Surface waves, excited as the result of the Faraday instability, can be characterized by a time-dependent relative amplitude of the displacements of the liquid-liquid and the liquid-gas interfaces. The in-phase displacements are associated with a zigzag (barotropic) mode and the antiphase displacement corresponds to the varicose thinning mode. We numerically determine the stability threshold in the vibrated two-layer film and compute the dispersion relation together with ...
We study the effects of vertical sinusoidal vibrations on a liquid droplet with a low surface tensio...
Faraday waves are generated at the air/liquid interface inside an array of square cells. As the free...
We investigate the long time evolution of a thin fluid layer in three spatial dimensions located on ...
Solitary-like surface waves that originate from the spatio-temporal evolution of falling liquid film...
Different sort of problems arise from sloshing liquids in containers. Well studied examples include ...
We report results of an experimental study of Faraday waves that were formed on the interface betwee...
The mechanism of the instability of a layer of liquid flowing down an inclined plane is studied. Fir...
Since Faraday's founding work in 1831, it is known that the surface of a vertically vibrated fluid l...
The linear stability of a liquid film falling down an inclined flexible plane under the influence of...
One reports experiments and numerical simulations of Faraday waves at the liquidvapor interface of f...
We study the transverse instability of a liquid ridge on horizontal and inclined substrates using a ...
The formation of Faraday waves in a liquid inside a cylindrical vessel under the influence of vertic...
Linear stability of the free surface of a thin sheet of a viscous fluid on a vertically vibrated rig...
Interfacial instability of two layers of thin (<100-nm) immiscible liquid films on a solid subst...
We perform linear stability analysis of an interface separating two immiscible, inviscid, quiescent ...
We study the effects of vertical sinusoidal vibrations on a liquid droplet with a low surface tensio...
Faraday waves are generated at the air/liquid interface inside an array of square cells. As the free...
We investigate the long time evolution of a thin fluid layer in three spatial dimensions located on ...
Solitary-like surface waves that originate from the spatio-temporal evolution of falling liquid film...
Different sort of problems arise from sloshing liquids in containers. Well studied examples include ...
We report results of an experimental study of Faraday waves that were formed on the interface betwee...
The mechanism of the instability of a layer of liquid flowing down an inclined plane is studied. Fir...
Since Faraday's founding work in 1831, it is known that the surface of a vertically vibrated fluid l...
The linear stability of a liquid film falling down an inclined flexible plane under the influence of...
One reports experiments and numerical simulations of Faraday waves at the liquidvapor interface of f...
We study the transverse instability of a liquid ridge on horizontal and inclined substrates using a ...
The formation of Faraday waves in a liquid inside a cylindrical vessel under the influence of vertic...
Linear stability of the free surface of a thin sheet of a viscous fluid on a vertically vibrated rig...
Interfacial instability of two layers of thin (<100-nm) immiscible liquid films on a solid subst...
We perform linear stability analysis of an interface separating two immiscible, inviscid, quiescent ...
We study the effects of vertical sinusoidal vibrations on a liquid droplet with a low surface tensio...
Faraday waves are generated at the air/liquid interface inside an array of square cells. As the free...
We investigate the long time evolution of a thin fluid layer in three spatial dimensions located on ...