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Electro-osmotic flow through a two-dimensional screen-pump filter

Author(s)
Liu, Ying-Hung; Kuo, Chih-Yu; Chang, Chien C.; Wang, Chang-Yi
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Abstract
The electro-osmotic flow driven by a screen pump, composed of a line array of evenly spaced identical rectangular solid blocks, is investigated under the Debye-Hückel approximation. The geometry of the screen pump is determined by the spacing and aspect ratio of the solid blocks. A constant surface zeta potential is assumed on the block surface. The method of eigenfunction series expansion is applied to solve analytically for the applied electric field, electric charge potential in the fluid, and flow field. Because of the low Reynolds number, Stokes equations are applied for the flow. The analytic result is first confirmed by comparing with the exact solution of the electro-osmotic flow in an infinite channel. Then different geometries of the screen pump and the effect of the electrokinetic width are computed for their influence on the flow rate. Recirculating eddies and reversing flow are found even though the applied electric driving field is unidirectional.
Date issued
2011-09
URI
http://hdl.handle.net/1721.1/68653
Department
Massachusetts Institute of Technology. Department of Civil and Environmental Engineering
Journal
Physical Review E
Publisher
American Physical Society (APS)
Citation
Liu, Ying-Hong et al. “Electro-osmotic flow through a two-dimensional screen-pump filter.” Physical Review E 84.3 (2011): n. pag. Web. 25 Jan. 2012. © 2011 American Physical Society
Version: Final published version
ISSN
1539-3755
1550-2376

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