Electric-triple-layer model based AC electroosmosis flow
Jiang Hongyuan, Li Shanshan, Ren Yukun, and Tao Ye

TL;DR
This paper introduces a novel electric triple layer (ETL) model to accurately predict electroosmosis flow rates at low frequencies, improving upon classical EDL theory by accounting for deviations observed experimentally.
Contribution
The paper develops an electric triple layer model that better predicts electroosmosis flow and accounts for experimental deviations from classical EDL theory.
Findings
ETL model aligns well with experimental data
Cross-over frequency slightly higher in ETL model
Triple layer thickness and surface roughness significantly influence flow
Abstract
The paper presents an novel electric triple layer(ETL) model as an improved model of electrical double layer(EDL) to predict electroosmosis flow rate on the electrode surface at low frequency. The predicted slip velocity based on classical EDL theory is much higher than experimental results, and ETL model can account for this deviation. Cross-over frequency at which the maximum electroosmosis flow velocity occurs based on ETL model is a little bit higher than that predicted in EDL theory, but still in keeping with classical prediction. Influences of triple layer thickness and electrode surface roughness on electroosmosis flow are analyzed via simulation and theoretical analysis agrees with experimental data very well, proving its validity.
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Taxonomy
TopicsAerosol Filtration and Electrostatic Precipitation · Power Transformer Diagnostics and Insulation · Water Quality Monitoring Technologies
