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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Finite double layer and non-Newtonian power-law effects on electrokinetic diffusioosmotic flows in parallel plate microchannels
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Finite double layer and non-Newtonian power-law effects on electrokinetic diffusioosmotic flows in parallel plate microchannels

机译:平行平板微通道中电动扩散扩散流的有限双层和非牛顿幂律效应

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摘要

Diffusioosmotic flows of electrolytic non-Newtonian power-law liquids in parallel plate microchannels are theoretically investigated by considering the finite thickness of the interfacial electrical double layers. Semi-analytical or numerical solutions to the shear stress, flow velocity, effective viscosity, and volume flow rate are obtained as functions of the spatial coordinate, half channel width to Debye length ratio, interfacial zeta potential, diffusivity difference parameter, and the power-law flow behavior index. The border curves of zero flow rate obtained herein delineating the parametric regimes in which the non-Newtonian diffusioosmotic flow rate is directed towards downstream or upstream are distributed differently on the zeta potential versus diffusivity difference parameter map as compared to those obtained using thin double layer theory. As compared to Newtonian liquids, the rheology of dilatant and pseudoplastic liquids respectively enlarges and reduces the parametric regimes in which flow rate towards downstream occurs, which is a result exactly opposite to that obtained based on the thin double layer theory reported in recent literature.
机译:在理论上,通过考虑界面电双层的有限厚度,研究了平行板微通道中电解非牛顿幂律液体的扩散渗透流。根据空间坐标,半通道宽度与德拜长度比,界面ζ电势,扩散率差异参数以及功率-功率的函数,获得了剪切应力,流速,有效粘度和体积流量的半解析或数值解。法律流动行为指数。与使用薄双层理论获得的参数相比,此处获得的零流量的边界曲线描绘了非牛顿扩散渗透率流向下游或上游的参数方案,在zeta势与扩散率差参数图上的分布不同。与牛顿液体相比,膨胀液体和假塑性液体的流变性分别增大和减小了发生向下游流动的参数状态,这与基于最近文献报道的薄双层理论获得的结果完全相反。

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