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Electroviscous effects in a Carreau liquid flowing through a cylindrical microfluidic contraction

机译:在Carreau液体中通过圆柱微流体收缩流动的电粘性效应

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Electroviscous effects in steady, pressure-driven flow of a Carreau shear-thinning liquid in a cylindrical microfluidic 4:1:4 contraction-expansion at low Reynolds number are investigated numerically by solving the equations governing the flow, the electric field, and ion transport, using a finite volume method. The channel wall is considered to have a uniform surface charge density and the liquid is assumed to be a symmetric 1:1 electrolyte solution. Predictions are presented for a range of values of the shear-thinning parameters in the Carreau model for various surface charge densities and Debye lengths. The apparent/physical viscosity ratio is shown to increase as the degree of shear-thinning increases. Thus the electroviscous effect is stronger in shear-thinning liquids than it is when the liquid is Newtonian, a result previously obtained for uniform pipe flow of power-law liquids. The trend holds true regardless of the choice of surface charge density or Debye length, although the magnitude of the trend decreases as the surface charge density and/or the Debye length is reduced. Comparison between uniform pipe flow of a Carreau liquid and the corresponding power-law liquid that approximates it at large shear rates shows that the apparent/physical viscosity ratios for the two models are almost identical. A previous prediction that a near-wall region of reduced velocity can occur for pipe flow of a shear-thinning power-law liquid when EDLs are overlapping and surface charge density is elevated is confirmed for a Carreau liquid.
机译:通过求解控制流量,电场和离子迁移的方程,数值研究了在低雷诺数下圆柱形微流体4:1:4收缩-膨胀中Carreau剪切稀化液体在稳定的压力驱动流中的电粘性效应,使用有限体积法。认为通道壁具有均匀的表面电荷密度,并且假定液体为对称的1:1电解质溶液。在Carreau模型中,针对各种表面电荷密度和Debye长度,对剪切稀化参数的值范围进行了预测。表观/物理粘度比显示为随着剪切稀化程度的增加而增加。因此,在剪切稀化液体中,电粘性效应比在液体是牛顿液体时要强,这是先前幂律液体的均匀管道流动所获得的结果。不管表面电荷密度或德拜长度的选择如何,该趋势都成立,尽管随着表面电荷密度和/或德拜长度的减小,趋势的大小会减小。比较Carreau液体和相应的幂律液体在大剪切速率下的均匀管道流量时,两种模型的表观/物理粘度比几乎相同。对于Carreau液体,先前的预测已证实,当EDL重叠且表面电荷密度升高时,剪切稀化的幂律液体的管道流动会出现速度降低的近壁区域。

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