Experiments to study the effect of acoustic forces on individual bubbles in shear flows have been carried out. In the system that we have used, the competition between acoustic and fluid dynamical forces results in a spiraling bubble trajectory. This dynamics is modeled by expressing the balance between Bjerknes and hydrodynamic forces in terms of an ordinary differential equation model, to which a separation of time scales is applied. The success of this model shows that the simple force-balance approach is still meaningful when bubbles are subjected to sound fields
National audienceWe report on the primary and secondary acoustic forces exerted by ultrasonic standi...
The cavitation field in a cylindrical vessel bottom-insonified by a 19.7 kHz large area transducer i...
The dynamics of millimeter sized air bubbles rising through still water are investigated using preci...
Experiments to study the effect of acoustic forces on individual bubbles in shear flows have been ca...
In this short overviewwe report on our ongoingwork on the dynamics of bubbles in various flows. Thre...
International audienceThe primary Bjerknes force is responsible for the quick translational motion o...
International audienceĂWhen a bubble is driven by an incident sound field, it oscillates and scatter...
International audienceBubbles confined between the parallel walls of microchannels experience an inc...
The translational velocities of two spherical gas bubbles oscillating in water, which is irradiated ...
Single bubble dynamics are investigated using acoustic techniques for isolation and manipulation. Th...
Bubbles in an acoustic field are affected by forces such as primary and secondary Bjerknes forces, w...
The effect of an acoustically driven bubble on the acoustics of a liquid-filled pipe is theoreticall...
In a companion paper, a reduced model for propagation of acoustic waves in a cloud of inertial cavit...
Laboratory and numerical experiments are presented on the emission of sound on bubble coalescence. T...
The motion of a bubble of gas and vapour in an isochoric, inviscid liquid is numerically investigat...
National audienceWe report on the primary and secondary acoustic forces exerted by ultrasonic standi...
The cavitation field in a cylindrical vessel bottom-insonified by a 19.7 kHz large area transducer i...
The dynamics of millimeter sized air bubbles rising through still water are investigated using preci...
Experiments to study the effect of acoustic forces on individual bubbles in shear flows have been ca...
In this short overviewwe report on our ongoingwork on the dynamics of bubbles in various flows. Thre...
International audienceThe primary Bjerknes force is responsible for the quick translational motion o...
International audienceĂWhen a bubble is driven by an incident sound field, it oscillates and scatter...
International audienceBubbles confined between the parallel walls of microchannels experience an inc...
The translational velocities of two spherical gas bubbles oscillating in water, which is irradiated ...
Single bubble dynamics are investigated using acoustic techniques for isolation and manipulation. Th...
Bubbles in an acoustic field are affected by forces such as primary and secondary Bjerknes forces, w...
The effect of an acoustically driven bubble on the acoustics of a liquid-filled pipe is theoreticall...
In a companion paper, a reduced model for propagation of acoustic waves in a cloud of inertial cavit...
Laboratory and numerical experiments are presented on the emission of sound on bubble coalescence. T...
The motion of a bubble of gas and vapour in an isochoric, inviscid liquid is numerically investigat...
National audienceWe report on the primary and secondary acoustic forces exerted by ultrasonic standi...
The cavitation field in a cylindrical vessel bottom-insonified by a 19.7 kHz large area transducer i...
The dynamics of millimeter sized air bubbles rising through still water are investigated using preci...