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Combined viscoelectric and steric effects on the electroosmotic flow in nano/microchannels with heterogeneous zeta potentials

机译:结合粘合和空间效应对具有异质Zeta电位的纳米/微通道中的电渗流流动

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The present study analyzes the combined viscoelectric and steric effects on the electroosmotic flow of Newtonian fluids in nano/microchannels. The governing equations that describe the flow field are the modified Poisson-Boltzmann equation for the electric potential, the mass conservation and momentum equations, which are solved numerically. On the channel walls, arbitrary and heterogeneous zeta potentials modulated via sinusoidal functions are imposed, being controlled by a phase angle, an amplitude and a wave number. The use of arbitrary zeta potentials leads to the study of the viscoelectric effect due to the fact that the viscosity near the walls of the channel increases drastically. Also, the presence of high ionic concentrations and large effective ionic sizes causes an excluded volume of the crowding of ions into the electric double layer; in this manner, the study of the steric effect is relevant in the present work. The results show that the viscoelectric effect produces a reduction in the magnitude of the velocity profiles when zeta potentials are magnified. On the contrary, the steric effect counteracts the aforementioned effect, increasing the velocity of the flow. In addition, the heterogeneous zeta potentials at the walls generate an induced pressure and recirculations on the flow. In particular, when the wave number is even leads to a condition with null volumetric flow rate; while for an odd wave number, a favorable volumetric flow rate is generated. This study extends the knowledge of electroosmotic flows under field effects for future mixing applications.
机译:本研究分析了纳米/微通道牛顿液体电渗流的组合粘物电和空间效应。描述流场的控制方程是用于电位的改进的Poisson-Boltzmann方程,质量保守和动量方程,这些泊位在数字上解决。在沟道壁上,通过正弦函数调制的任意和异构Zeta电位被施加,由相角,幅度和波数控制。由于通道壁附近的粘度急剧增加,使用任意Zeta电位导致粘磁效应的研究。而且,高离子浓度和大的有效离子尺寸的存在导致离子的被排除的挤入电双层中的容量;以这种方式,对空间效果的研究在本作工作中是相关的。结果表明,当Zeta电位放大时,粘弹性效应产生速度曲线幅度的减小。相反,空间效果抵消了上述效果,增加了流动的速度。另外,壁上的异构Zeta电位产生诱导的压力和流动的再循环。特别地,当波数甚至导致具有空体积流量的条件;虽然对于奇数波数,产生有利的体积流量。该研究扩展了对未来混合应用的现场效应下的电软渗流的知识。

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