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Optimizing the longitudinal and transverse electroosmotic pumping in a rectangular channel with horizontal baffle plates

机译:用水平挡板在矩形通道中优化纵向和横向电渗泵

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This paper presents a continued study to our previous work on electroosmotic (EO) flow in a channel with vertical baffle plates by further investigating EO flow through an array of baffle plates arranged in parallel to the channel walls. The flow may be driven either in the direction along or in the direction transverse to the plates, thus distinguishing the longitudinal EO pumping (LEOP) and the transverse EO pumping (TEOP). In both types of EO pumping, it is more interesting to examine the cases when the baffle plates develop a higher zeta potential (denoted by alpha) than that on the channel walls (beta). This semi-analytical study enables us to compare between LEOP and TEOP in the pumping efficiency under similar conditions. The TEOP case is more difficult to solve due to the higher order governing partial differential equations caused by the induced non-uniform pressure gradient distribution. In particular, we examine how the EO pumping rates deviate from those predicted by the Helmholtz-Smoluchowski velocity and illustrate the general trend of optimizing the EO pumping rates with respect to the physical and geometric parameters involved. Published by AIP Publishing.
机译:本文提出了一种持续研究,以我们以前的工作电渗上(EO)与垂直挡板的信道通过进一步调查EO流过布置在平行于所述通道壁挡板的阵列流动。流可以或者在沿着或在沿横向于所述板被驱动,从而区分纵向EO泵送(LEOP)和横向EO泵送(TEOP)。在两种类型的EO泵送的,它更有趣当挡板开发比通道壁(测试版)上的较高的ζ电位(由阿尔法表示)来检查的情况。这种半分析研究,使我们在类似条件下的泵浦效率LEOP和TEOP之间的比较。的情况下TEOP是更加难以解决由于高阶理事引起诱导的非均匀的压力梯度分布的偏微分方程。特别是,我们检查EO泵送速率如何从那些由亥姆霍兹维Smoluchowski速度预测的偏离和说明优化EO泵送率相对于相关的物理和几何参数的总趋势。通过AIP发布发布。

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