Quantification of Vortex Generation Due to Non-Equilibrium Electrokinetics at the Micro/Nanochannel Interface: Particle Tracking Velocimetry

  • Lee, Seung Jun
  • Kwon, Kilsung
  • Jeon, Tae-Joon
  • Kim, Sun Min
  • Kim, Daejoong
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

4

초록

We describe a quantitative study of vortex generation due to non-equilibrium electrokinetics near a micro/nanochannel interface. The microfluidic device is comprised of a microchannel with a set of nanochannels. These perm-selective nanochannels induce flow instability and thereby produce strong vortex generation. We performed tracking visualization of fluorescent microparticles to obtain velocity fields. Particle tracking enables the calculation of an averaged velocity field and the velocity fluctuations. We characterized the effect of applied voltages and electrolyte concentrations on vortex formation. The experimental results show that an increasing voltage or decreasing concentration results in a larger vortex region and a strong velocity fluctuation. We calculate the normalized velocity fluctuation whose meaning is comparable to turbulent intensity and we found that it is as high as 0.12. This value is indicative of very efficient mixing, albeit with a small Reynolds number.

키워드

vortex generationnanochannelmicroparticleparticle tracking velocimetryON-A-CHIPCONCENTRATION POLARIZATIONPRECONCENTRATIONTECHNOLOGIESNANOFLUIDICSSTRAIGHTGEOMETRYDEVICEMIXER
제목
Quantification of Vortex Generation Due to Non-Equilibrium Electrokinetics at the Micro/Nanochannel Interface: Particle Tracking Velocimetry
저자
Lee, Seung JunKwon, KilsungJeon, Tae-JoonKim, Sun MinKim, Daejoong
DOI
10.3390/mi7070127
발행일
2016-07
유형
Article
저널명
Micromachines
7
7