Acoustic radiation force has been demonstrated as a method for manipulating micron-scale particles, but is frequently affected by unwanted streaming. In this paper the streaming in a multi-transducer quasi-standing wave acoustic particle manipulation device is assessed, and found to be dominated by a form of Eckart streaming. The experimentally observed streaming takes the form of two main vortices that have their highest velocity in the region where the standing wave is established. A finite element model is developed that agrees well with experimental results, and shows that the Reynolds stresses that give rise to the fluid motion are strongest in the high velocity region. A technical solution to reduce the streaming is explored that enta...
Ultrasonic particle manipulation tools have many promising applications in life sciences research, e...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
When driven by an acoustic pressure field at ultrasound frequencies, microbubbles adsorbed at a soli...
Acoustic radiation force has been demonstrated as a method for manipulating micron-scale particles, ...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
In acoustofluidic particle manipulation and sorting devices streaming flows are typically found in a...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
Broadly speaking, acoustic streaming is generated by a nonlinear acoustic wave with a finite amplitu...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Acoustic tweezers use ultrasound for contact-free manipulation of particles from millimeter to sub-m...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
International audienceThis paper presents a microfluidic device that implements standing surface aco...
Ultrasonic particle manipulation tools have many promising applications in life sciences research, e...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
When driven by an acoustic pressure field at ultrasound frequencies, microbubbles adsorbed at a soli...
Acoustic radiation force has been demonstrated as a method for manipulating micron-scale particles, ...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
In acoustofluidic particle manipulation and sorting devices streaming flows are typically found in a...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
Broadly speaking, acoustic streaming is generated by a nonlinear acoustic wave with a finite amplitu...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Acoustic tweezers use ultrasound for contact-free manipulation of particles from millimeter to sub-m...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
International audienceThis paper presents a microfluidic device that implements standing surface aco...
Ultrasonic particle manipulation tools have many promising applications in life sciences research, e...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
When driven by an acoustic pressure field at ultrasound frequencies, microbubbles adsorbed at a soli...