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An Investigation Of The Effects Of Inlet Channel Geometry On Electrokinetic Instabilities

机译:进气道几何形状对电动不稳定性影响的研究

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Numerical and experimental investigations are performed to examine the feasibility of inducing electrokinetic instability (EKI) phenomena in two-channel junctions containing two aqueous electrolytes with a 10:1 conductivity ratio via the application of a low-intensity DC electrical field. A deep microchannel with 700 μm in depth and 100 μm in width was designed, fabricated and used in this investigation. The results show that when the species streams are injected such that the conductivity gradient between them is perpendicular to the DC electrical driving field, an EKI effect can only be induced by applying a high electrical field intensity of 0.54 V/cm. However, when the potentials applied to the reservoirs of the microchip are switched such that the conductivity gradient is not perpendicular to the electrical field, flow instability can be achieved by applying a lower electrical field intensity.
机译:进行了数值和实验研究,以研究通过施加低强度直流电场在包含两种电导率为10:1的水性电解质的两通道结中引发电动不稳定性(EKI)现象的可行性。设计,制造并使用了深度为700μm,宽度为100μm的深微通道。结果表明,当注入物质流以使它们之间的电导率梯度垂直于DC电驱动场时,只有通过施加0.54 V / cm的高电场强度才能诱发EKI效应。然而,当切换施加到微芯片的储器的电势以使得电导率梯度不垂直于电场时,可以通过施加较低的电场强度来实现流动不稳定性。

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