Archivio istituzionale della ricerca (Alma Mater Studiorum Università di Bologna) · 2015 · 66 citations · 21 references
Ultrasound-driven oscillating microbubbles are used as active actuators in microfluidic devices to perform manifold tasks such as mixing, sorting, and manipulation of microparticles. A common configuration consists of side bubbles created by trapping air pockets in blind channels perpendicular to the main channel direction. This configuration consists of acoustically excited bubbles with a semicylindrical shape that generate significant streaming flow. Because of the geometry of the channels, such flows are generally considered as quasi-two-dimensional. Similar assumptions are often made in many other microfluidic systems based on flat microchannels. However, in this Letter we show that microparticle trajectories actually present a much richer behavior, with particularly strong out-of-plane dynamics in regions close to the microbubble interface. Using astigmatism particle-tracking velocimetry, we reveal that the apparent planar streamlines are actually projections of a stream surface with a pseudotoroidal shape. We, therefore, show that acoustic streaming cannot generally be assumed as a two-dimensional phenomenon in confined systems. The results have crucial consequences for most of the applications involving acoustic streaming such as particle trapping, sorting, and mixing.
21
Chaotic Mixer for Microchannels
Abraham D. Stroock, Stephan K. W. Dertinger, Armand Ajdari et al. · Science · 2002 · 3.3K citations
Hassan Aref · Journal of Fluid Mechanics · 1984 · 1.8K citations
Passive mixing in a three-dimensional serpentine microchannel
Ruize Liu, Mark A. Stremler, Kendra V. Sharp et al. · Journal of Microelectromechanical Systems · 2000 · 1.2K citations
Engineering, Fluid Mixing, Physics +15
Acoustofluidics 7: The acoustic radiation force on small particles
Henrik Bruus · Lab on a Chip · 2012 · 950 citations