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Mass transfer of a neutral solute in porous microchannel under streaming potential

机译:在流动电位下多孔微通道中中性溶质的传质

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The mass transport of a neutral solute in a porous wall, under the influence of streaming field, has been analyzed in this study. The effect of the induced streaming field on the electroviscous effect of the fluid for different flow geometries has been suitably quantified. The overall electroosmotic velocity profile and expression for streaming field have been obtained analytically using the Debye-Huckel approximation, and subsequently used in the analysis for the mass transport. The analysis shows that as the solution Debye length increases, the strength of the streaming field and, consequently, the electroviscous effect diminishes. The species transport equation has been coupled with Darcy's law for quantification of the permeation rate across the porous wall. The concentration profile inside the mass transfer boundary layer has been solved using the similarity transformation, and the Sherwood number has been calculated from the definition. In this study, the variation of the permeation rate and solute permeate concentration has been with the surface potential, wall retention factor and osmotic pressure coefficient has been demonstrated for both the circular as well as rectangular channel cross-section.
机译:在这项研究中,分析了中性溶质在多孔壁中在流场的影响下的传质。对于不同的流动几何形状,感应流场对流体的电粘性效应的影响已经适当地量化了。使用Debye-Huckel逼近法已获得了整体电渗速度曲线和流场表达式,随后将其用于质量传输分析。分析表明,随着解法德拜长度的增加,流场的强度减小,因此电粘性效应减小。物种迁移方程式已与达西定律结合在一起,用于量化多孔壁上的渗透速率。使用相似变换已解决了传质边界层内部的浓度分布问题,并根据该定义计算了舍伍德数。在这项研究中,渗透率和溶质渗透物浓度随表面电势,壁保留因子和渗透压系数的变化已经证明了圆形和矩形通道的横截面。

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