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A Lattice Boltzmann model with high Reynolds number in the presence of external forces to describe microfluidics
Authors:Baoming?Li,Daniel?Y.?Kwok  author-information"  >  author-information__contact u-icon-before"  >  mailto:daniel.y.kwok@ualberta.ca"   title="  daniel.y.kwok@ualberta.ca"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:(1) Nanoscale Technology and Engineering Laboratory, Department of Mechanical Engineering, University of Alberta, Edmonton, AB, Canada T6G 2G8,
Abstract:We present here a lattice Boltzmann model with high Reynolds number in the presence of external force fields to describe electrokinetic phenomena in microfluidics, by considering pressure as the only external force for liquid flow. Our results from a 9-bit square lattice Boltzmann model are in excellent agreement with experimental data in pressure-driven microchannel flow that could not be fully described by electrokinetic theory. The difference between the predicted and experimental Reynolds numbers from pressure gradients are well within 5%. Our results suggest that the lattice Boltzmann model described here is an effective computational tool to predict the more complex microfluidic systems that might be problematic using conventional methods.
Keywords:Lattice Boltzmann model  Microchannel flow  Electrokinetics  Electrical double layer  Microfluidics
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