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ELECTROKINETIC MICROFLOW INSTABILITY WITH CONDUCTIVITY GRADIENTS

机译:带电导率梯度的电动微流不稳定性

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摘要

We have experimentally identified and quantified an electrokinetic flow instability that occurs in DC-electric-field driven microfluidic channels with significant conductivity gradients. We have, for the first time, developed a physical model for this instability which captures the interactions between bulk charge accumulation, electromigration, convection, and diffusion. A linear stability analysis based on this model captures key physics of this convective instability with a threshold electric field. The model and experiments show conductivity gradients and their associated bulk charge accumulation are crucial for such instabilities.
机译:我们已经通过实验确定并量化了在具有明显电导率梯度的直流电场驱动的微流体通道中发生的电动流动不稳定性。我们首次针对这种不稳定性开发了一个物理模型,该模型捕获了大电荷积累,电迁移,对流和扩散之间的相互作用。基于此模型的线性稳定性分析捕获了具有阈值电场的对流不稳定性的关键物理原理。模型和实验表明,电导率梯度及其相关的体电荷积累对于这种不稳定性至关重要。

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