Capillary-gravity waves in an inviscid liquid exhibit second-or sub-harmonic resonance at precise frequencies. When the container performs small periodic vertical vibrations, either wave may also experience Faraday ('parametric') excitation. Equations describing this situation are derived, incorporating slight detuning from two-wave and Faraday resonances. Similar equations arise in other physical contexts.With Faraday forcing of the wave with lower frequency, the evolution equations (without detuning) are transformable to the corresponding unforced equations, the general solution of which is known. With Faraday forcing of the wave with higher frequency no such simplification is possible. Here, various transformed equations are considered a...
ABSTRACT: Low frequency (O(10 Hz−10 kHz)) vibration excitation of capillary waves has been extensive...
Faraday waves are standing waves which arise through a parametric instability on the surface of a ve...
International audienceThe purpose of this work is to investigate, for the first time, excitation of ...
Capillary-gravity waves in an inviscid liquid exhibit second-or sub-harmonic resonance at precise fr...
Complex interaction phenomena are known to arise among standing free-surface waves in fluids within ...
This paper deals with nearly inviscid, capillary?gravity, modulated waves parametrically excited by ...
Faraday waves [1] are gravity-capillary waves that are excited on the surface of a fluid when its co...
We construct asymptotic solutions of the 2D problem on weakly nonlinear capillary-gravitational Fara...
Two-dimensional gravity-capillary water waves are analyzed using a fully-nonlinear Cauchy-integral m...
Recent experiments have observed the emergence of standing waves at the free surface of elastic bodi...
Weakly dissipative parametrically excited (by vertical vibration) surface gravity-capillary waves in...
Nearly inviscid parametrically excited surface gravity–capillary waves in two-dimensional domains of...
In the present contribution we study the waves arising on the free surface of a liquid in a rectangu...
We develop a theory of parametric excitation of weakly nonlinear standing gravity waves in a tank, w...
Three-mode interaction equations are derived for Faraday waves in a long rectangular container. Two ...
ABSTRACT: Low frequency (O(10 Hz−10 kHz)) vibration excitation of capillary waves has been extensive...
Faraday waves are standing waves which arise through a parametric instability on the surface of a ve...
International audienceThe purpose of this work is to investigate, for the first time, excitation of ...
Capillary-gravity waves in an inviscid liquid exhibit second-or sub-harmonic resonance at precise fr...
Complex interaction phenomena are known to arise among standing free-surface waves in fluids within ...
This paper deals with nearly inviscid, capillary?gravity, modulated waves parametrically excited by ...
Faraday waves [1] are gravity-capillary waves that are excited on the surface of a fluid when its co...
We construct asymptotic solutions of the 2D problem on weakly nonlinear capillary-gravitational Fara...
Two-dimensional gravity-capillary water waves are analyzed using a fully-nonlinear Cauchy-integral m...
Recent experiments have observed the emergence of standing waves at the free surface of elastic bodi...
Weakly dissipative parametrically excited (by vertical vibration) surface gravity-capillary waves in...
Nearly inviscid parametrically excited surface gravity–capillary waves in two-dimensional domains of...
In the present contribution we study the waves arising on the free surface of a liquid in a rectangu...
We develop a theory of parametric excitation of weakly nonlinear standing gravity waves in a tank, w...
Three-mode interaction equations are derived for Faraday waves in a long rectangular container. Two ...
ABSTRACT: Low frequency (O(10 Hz−10 kHz)) vibration excitation of capillary waves has been extensive...
Faraday waves are standing waves which arise through a parametric instability on the surface of a ve...
International audienceThe purpose of this work is to investigate, for the first time, excitation of ...