Electroosmotic Coupling in Porous Media, a New Model Based on a Fractal Upscaling Procedure

被引:0
作者
Luong Duy Thanh
Damien Jougnot
Phan Van Do
Aida Mendieta
Nguyen Xuan Ca
Vu Xuan Hoa
Pham Minh Tan
Nguyen Thi Hien
机构
[1] Thuyloi University,CNRS, EPHE, UMR 7619 Metis
[2] Sorbonne Université,Faculty of Physics and Technology
[3] TNU-University of Sciences,Faculty of Fundamental Sciences
[4] Thai Nguyen University of Technology,Ceramics and Biomaterials Research Group, Advanced Institute of Materials Science
[5] Ton Duc Thang University,Faculty of Applied Sciences
[6] Ton Duc Thang University,undefined
来源
Transport in Porous Media | 2020年 / 134卷
关键词
Electroosmosis; Electrokinetics; Water saturation; Zeta potential; Fractal; Porous media;
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中图分类号
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摘要
Electrokinetic and electroosmotic couplings can play important roles in water and ions transport in charged porous media. Electroosmosis is the phenomena explaining the water movement in a porous medium subjected to an electrical field. In this work, a new model is obtained through a new up-scaling procedure, considering the porous medium as a bundle of tortuous capillaries of fractal nature. From the model, the expressions for the electroosmosis pressure coefficient, the relative electroosmosis pressure coefficient, the maximum back pressure, the maximum flow rate, the flow rate-applied back pressure relation and the product of the permeability and formation factor of porous media are also obtained. The sensitivity of the relative electroosmosis pressure coefficient is then analyzed and explained. The model predictions are then successfully compared with published datasets. Additionally, we deduce an expression for the relative streaming potential coefficient and then compare it with a previously published model and experimental data from a dolomite rock sample. We find a good agreement between those models and experimental data, opening up new perspectives to model electroosmotic phenomena in porous media saturated with various fluids.
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页码:249 / 274
页数:25
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