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Transient behaviour of streaming potential development in microfluidic channels

机译:微流通道中流势发展的瞬态行为

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Electrokinetic (EK) flow is a flow of an electrolyte in narrow capillaries driven by the combined influence of electric field and pressure, is of significant interest in microfluidic devices. Pressure-driven-flow in a microchannel with charged solid surfaces induces streaming current, streaming potential and is a sub-group of EK flow. In this paper a transient numerical simulation of ion transport leading to the development of a streaming potential across a finite length cylindrical microchannel is considered. The problem is analyzed through the coupling of fluid dynamics, electrical field and free charge density (ion concentration) distribution. The solution based on finite element analysis shows the transient development of ionic fluxes, currents, and the streaming potential across the channel. The simulation results show that the streaming potential across the channel is predominantly set up at the timescale of the developing convective transport, while the equilibrium ion concentrations are developed over a considerably longer duration, typically conforming to the diffusional time scale.
机译:电动(EK)流动是在电场和压力共同作用下驱动的狭窄毛细管中的电解质流动,在微流体设备中引起了极大的关注。具有固体表面带电的微通道中的压力驱动流会引起流电流,流电势,并且是EK流的一个子类。在本文中,考虑了离子迁移的瞬态数值模拟,该模拟导致了在有限长度的圆柱形微通道上产生流态电势。通过流体动力学,电场和自由电荷密度(离子浓度)分布的耦合来分析该问题。基于有限元分析的解决方案显示了离子通量,电流和整个通道上的流动电势的瞬态发展。模拟结果表明,跨通道的流电势主要在对流输运的时间尺度上建立,而平衡离子浓度则在相当长的持续时间内形成,通常符合扩散时间尺度。

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