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Numerical solution of a multi-ion one-potential model for electroosmotic flow in two-dimensional rectangular microchannels
Authors:Van Theemsche Achim  Deconinck Johan  Van den Bossche Bart  Bortels Leslie
Affiliation:Vrije Universiteit Brussel, Belgium. avtheems@vub.ac.be
Abstract:A new more general numerical model for the simulation of electrokinetic flow in rectangular microchannels is presented. The model is based on the dilute solution model and the Navier-Stokes equations and has been implemented in a finite-element-based C++ code. The model includes the ion distribution in the Helmholtz double layer and considers only one single electrical' potential field variable throughout the domain. On a charged surface(s) the surface charge density, which is proportional to the local electrical field, is imposed. The zeta potential results, then, from this boundary condition and depends on concentrations, temperature, ion valence, molecular diffusion coefficients, and geometric conditions. Validation cases show that the model predicts accurately known analytical results, also for geometries having dimensions comparable to the Debye length. As a final study, the electro-osmotic flow in a controlled cross channel is investigated.
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