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LBM Simulation of Electro-Osmotic Flow (EOF) in Nano/Micro scales Porous Media with an Inclusive Parameters Study

机译:纳米/微量缩放的电渗透流量(EOF)的LBM模拟具有包容性参数研究的多孔介质

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In this paper, we present our results about simulation of 2D-EOF in Nano/Micro scales porous media using lattice Boltzmann method (LBM) in micro-channel for EOF. The high efficient numerical code use strongly high nonlinear Poisson Boltzmann equation to predicate behavior of EOF in complex geometry. The results are developed with precisely investigation of several effective parameters on permeability of EOF, such as geometry (channel height and number and location of charge), external electric field, thickness of Debye length (ionic concentration), and zeta potential. Our results are in excellent agreement with available analytical results. Our results show that for certain external electric field, zeta potential and porosity, there is an optimal Kh parameter (ionic concentration and channel height in this study) for velocity profiles. Based on the current study, homogenous zeta potential distribution on solid porous media, zeta potential and thickness of Debye length (Kh parameter) can dramatically affect on EOF permeability linearly or non-linearly, depend on amount of quantities. Thus, different arrangements are also considered. We show that prediction of EOF behavior in complex geometry with regarding role of effective parameters is completely possible for various applicable conditions.
机译:在本文中,我们在纳米/微尺度在微通道中使用晶格Boltzmann方法(LBM)的纳米/微尺度多孔介质的模拟结果。高效的数值代码使用强烈的非线性泊松Boltzmann方程,以复杂几何形状中EOF的谓词行为。通过精确地研究了关于EOF的渗透率的几个有效参数的精确研究,例如几何(通道高度和电荷数量和位置),外部电场,脱义长度(离子浓度)和Zeta电位的厚度。我们的结果符合可用的分析结果。我们的研究结果表明,对于某些外部电场,Zeta电位和孔隙率,对于速度剖面,存在最佳KH参数(本研究中的离子浓度和通道高度)。基于目前的研究,固体多孔介质的均质Zeta电位分布,替代长度(KH参数)的Zeta电位和厚度(KH参数)可以显着影响线性或非线性的EOF渗透性,取决于数量。因此,还考虑了不同的布置。我们表明,对于各种适用条件,完全可以为具有有效参数的作用的复杂几何形状中的EOF行为的预测。

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