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On the competition between streaming potential effect and hydrodynamic slip effect in pressure-driven microchannel flows

机译:压力驱动微通道流中的流势效应与水动力滑移效应之间的竞争

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The competition between streaming potential effect and hydrodynamic slip effect in pressure-driven microchannel flows is elucidated. The treatment is performed analytically in the framework of the Debye-Hückel linear approximation and the Navier slip boundary condition. As compared with pressure-driven flows in nonslip microchannels, pressure-driven flows in microchannels with hydrodynamic slippage are found to experience severer flow reduction (streaming potential effect). An apparent viscosity ratio is also defined to identify the competition between streaming potential effect and hydrodynamic slip effect in pressure-driven microchannel flows. It is shown that the streaming potential effect predominates when this ratio is larger than unity and the slip effect predominates when this ratio is smaller than unity. More importantly, we derive a formula for the critical slip length which provides a guideline for designing hydrophobic surfaces over which the effect of hydrodynamic slip exactly counteracts that of streaming potential.
机译:阐明了在压力驱动的微通道流中流势效应和流体动力滑移效应之间的竞争。在Debye-Hückel线性逼近和Navier滑动边界条件的框架内进行分析处理。与非滑动微通道中的压力驱动流相比,发现具有流体动力学滑移的微通道中的压力驱动流经历了更严重的流量减少(流潜在效应)。还定义了表观粘度比,以识别压力驱动的微通道流中的流势效应和流体动力滑移效应之间的竞争。结果表明,当该比率大于1时,流势效应占主导;当该比率小于1时,滑移效应起主导作用。更重要的是,我们推导出了临界滑移长度的公式,该公式为设计疏水表面提供了指导,在该表面上流体动力滑移的影响正好抵消了流动势的影响。

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