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Electroosmotic Flow of Non-Newtonian Fluid in Porous Polymer Membrane at High Zeta Potentials

机译:高Zeta电位多孔聚合物膜中非牛顿液的电渗流

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摘要

To help in the efficient design of fluid flow in electroosmotic pumps, electroosmotic flow of non-Newtonian fluid through porous polymer membrane at high zeta potentials is studied by mainly evaluating the total flow rate at different physical parameters. Non-Newtonian fluid is represented by the power-law model and the porous polymer membrane is considered as arrays of straight cylindrical pores. The electroosmotic flow of non-Newtonian fluid through a single pore is studied by solving the complete Poisson–Boltzmann equation and the modified Cauchy momentum equation. Then assuming the pore size distribution on porous polymer membrane obeys Gaussian distribution, the performance of electroosmotic pump operating non-Newtonian fluid is evaluated by computing the total flow rate of electroosmotic flow through porous polymer membrane as a function of flow behavior index, geometric parameters of porous membrane, electrolyte concentration, applied voltage, and zeta potential. It is found that enhancing zeta potential and bulk concentration rather than the applied voltage can also significantly improve the total flow rate in porous polymer membrane, especially in the case of shear thinning fluid.
机译:为了帮助在电渗泵中有效地设计流体流动,通过主要评估不同物理参数的总流速来研究在高Zeta电位下通过多孔聚合物膜的非牛顿流体的电渗流。非牛顿流体由动力法模型表示,多孔聚合物膜被认为是直圆柱孔的阵列。通过求解完整的泊松 - Boltzmann方程和改进的Cauchy动量方程,研究了非牛顿流体通过单个孔的电渗流。然后假设孔径分布在多孔聚合物膜Obeys高斯分布上,通过计算通过多孔聚合物膜作为流动行为指数的函数,几何参数计算电子渗透流量的总流量速率来评估电渗泵操作非牛顿流体的性能。多孔膜,电解质浓度,施加电压和Zeta电位。发现增强Zeta电位和体积浓度而不是施加的电压也可以显着提高多孔聚合物膜中的总流速,特别是在剪切稀释液的情况下。

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