Title of article
Direct numerical simulation of electrohydrodynamic flow instabilities in microchannels
Author/Authors
Storey، نويسنده , , Brian D.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
17
From page
151
To page
167
Abstract
Abstact
with gradients in electrical conductivity subjected to strong electric fields can undergo violent instability. In flows where molecular diffusion is slow, high conductivity gradients can be maintained beyond the initial instability and become a driver for chaotic flow. Despite the low Reynolds number in microchannel applications, molecular diffusion occurs slow enough that such flows are possible. This work investigates a class of electrically driven, conductivity gradient flow instabilities in microchannels that display turbulent characteristics at low Reynolds number. Flows far from the influence of solid boundaries and flows confined between parallel plates are considered. Electroosmotic flow at solid boundaries is also considered and found to have a dramatic impact on the flow. A variety of configurations and assumptions are studied using direct numerical simulation.
Keywords
Electrokinetic instability , Electrohydrodynamics
Journal title
Physica D Nonlinear Phenomena
Serial Year
2005
Journal title
Physica D Nonlinear Phenomena
Record number
1726299
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