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首页> 外文期刊>Analytical chemistry >Analytical Solution of Combined Electroosmotic/Pressure Driven Flows in Two-Dimensional Straight Channels: Finite Debye Layer Effects
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Analytical Solution of Combined Electroosmotic/Pressure Driven Flows in Two-Dimensional Straight Channels: Finite Debye Layer Effects

机译:二维直通道中电渗/压力驱动混合流的解析解:有限的德拜层效应

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摘要

Analytical results for the velocity distribution, mass flow rate, pressure gradient, wall shear stress, and vorticity in mixed electroosmotic/pressure driven flows are presented for two-dimensional straight channel geometry. We particularly analyze the electric double-layer (EDL) region near the walls and define three new concepts based on the electroosmotic potential distribution. These are the effective EDL thickness, the EDL displacement thickness, and the EDL vorticity thickness. We show that imposing Helmholtz-Smoluchowski velocity at the edge of the EDL as the velocity matching condition between the EDL and the bulk flow region is incomplete under spatial bulk flow variations across the finite EDL. However, the Helmholtz-Smoluchowski velocity can be used as the appropriate slip velocity on the wall. We discuss the limitations of this approach in satisfying the global conservation laws.
机译:对于二维直通道几何形状,给出了电渗/压力混合驱动流中的速度分布,质量流率,压力梯度,壁切应力和涡度的分析结果。我们特别分析了壁附近的双电层(EDL)区域,并根据电渗势分布定义了三个新概念。它们是有效EDL厚度,EDL位移厚度和EDL涡度厚度。我们显示,在EDL边缘施加Helmholtz-Smoluchowski速度作为EDL与大流量区域之间的速度匹配条件在有限EDL的空间大流量变化下是不完整的。但是,Helmholtz-Smoluchowski速度可以用作墙壁上的适当滑移速度。我们讨论了这种方法在满足全球保护法方面的局限性。

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