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Analytical and numerical study of the electro-osmotic annular flow of viscoelastic fluids

机译:粘弹性流体电渗环流的分析与数值研究

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摘要

In this work we present semi-analytical solutions for the electro-osmotic annular flow of viscoelastic fluids modeled by the Linear and Exponential 1'11 models. The viscoelastic fluid flows in the axial direction between two concentric cylinders under the combined influences of electrokinetic and pressure forcings. The analysis invokes the Debye-Hiickel approximation and includes the limit case of pure electro-osmotic flow. The solution is valid for both no slip and slip velocity at the walls and the chosen slip boundary condition is the linear Navier slip velocity model. The combined effects of fluid rheology, electro-osmotic and pressure gradient forcings on the fluid velocity distribution are also discussed.
机译:在这项工作中,我们提出了由线性和指数1'11模型建模的粘弹性流体的电渗环流的半解析解。在电动势和压力强迫的共同影响下,粘弹性流体沿轴向在两个同心圆柱之间流动。该分析调用Debye-Hiickel逼近,并包括纯电渗流的极限情况。该解决方案对于墙面无滑移和滑移速度均有效,并且所选滑移边界条件为线性Navier滑移速度模型。还讨论了流体流变学,电渗和压力梯度强迫对流体速度分布的综合影响。

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