首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EFFECT OF ELECTRICAL DOUBLE LAYER ON ELECTRICAL CONDUCTIVITY AND PRESSURE DROP IN PRESSURE-DRIVEN MICRO-CHANNEL FLOW
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EFFECT OF ELECTRICAL DOUBLE LAYER ON ELECTRICAL CONDUCTIVITY AND PRESSURE DROP IN PRESSURE-DRIVEN MICRO-CHANNEL FLOW

机译:电双层对压力驱动微通道流动电导率和压降的影响

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The effect of electrical double layer (EDL) on micro-channel flow has been studied widely. Most research focused on flows with typical channel width or pipe diameter much greater than the thickness of EDL (Debye length). In such cases, the influence of EDL on the overall electrical conductivity is small, and a constant bulk electrical conductivity is often used in calculations. In our study of pressure-driven micropipette injection flow, the pipe size is on the same order of magnitude as the Debye length. To elucidate the effect of overlapping EDL the flow inside a micro-channel was analyzed. The governing equations for the flow, the Poisson equation for the electric potential, and the charge continuity equation for the net charge were solved analytically. The effect of overlapping EDL on the electrical conductivity and velocity distribution in the micro-channel and the pressure drop were quantified. The results showed that, the average conductivity of electrolyte solution inside the channel increased significantly, dependent on the channel width. With the modified mean electrical conductivity, the pressure drop for the pressure-driven flow was smaller than that without considering the influence of EDL on conductivity.
机译:电双层(EDL)对微通道流的影响已经广泛研究。大多数研究专注于流动,典型通道宽度或管道直径大于EDL的厚度(德义长度)。在这种情况下,EDL对整体电导率的影响小,并且通常用于计算中恒定的散装电导率。在我们对压力驱动的微型管注射流程的研究中,管尺寸与德义长度相同的数量级。为了阐明重叠EDL的效果,分析了微通道内的流动。用于流动的控制方程,用于电位的泊松方程,以及净电荷的电荷连续性方程进行了分析。定量了重叠EDL对微通道和压降中的电导率和速度分布的影响。结果表明,通道内电解质溶液的平均电导率显着增加,取决于通道宽度。利用改进的平均导电性,压力驱动流的压降小于不考虑EDL对电导率的影响。

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