Title of article
Electroosmosis law via homogenization of electrolyte flow equations in porous media
Author/Authors
Youcef Amirat، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2008
Pages
19
From page
1227
To page
1245
Abstract
By the homogenization approach we justify a two-scale model of ion transport in porous media for one-dimensional horizontal
steady flows driven by a pressure gradient and an external horizontal electrical field. By up-scaling, the electroosmotic flow equations
in horizontal nanoslits separated by thin solid layers are approximated by a homogenized system of macroscale equations in
the form of the Poisson equation for induced vertical electrical field and Onsager’s reciprocity relations between global fluxes (hydrodynamic
and electric) and forces (horizontal pressure gradient and external electrical field). In addition, the two-scale approach
provides macroscopic mobility coefficients in the Onsager relations.
© 2008 Elsevier Inc. All rights reserved.
Keywords
Porous media , Electroosmosis , Nonlocal Poisson–Boltzmann equation , Existence , Nanomembranes , homogenization
Journal title
Journal of Mathematical Analysis and Applications
Serial Year
2008
Journal title
Journal of Mathematical Analysis and Applications
Record number
937065
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