微通道系统中颗粒浓度过渡时电容测量截面

N. Othman, Je-Eun Choi, H. Obara, M. Takei
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摘要

在本研究中,电容传感作为一种可视化的方法,通过外部电容测量来确定微通道系统中介电常数的分布。该微通道采用微机电系统(MEMS)先进技术制造,具有两个进、出口和五个截面,每个截面上嵌入12对电极连接到微通道系统。在不同的进口注入条件下,测量了截面III和截面V处的电容感测,截面III位于微通道中心,截面V靠近出口。采用电容传感技术研究了6.0µm聚苯乙烯颗粒和去离子水的动力学行为,详细研究了微电极非均匀电场条件下颗粒浓度的分布。在微通道面积测量的不同区域,计算了粒子的介电常数和粒子浓度与粒子体积分数的关系。将微通道面积测量分为三个不同的区域,其中I区为靠近墙体的测量,II区为中心线与墙体中间的测量,III区为微通道系统中心线处的测量。颗粒集中在I区和II区,即微通道中心线之间和壁面附近的区域,表明微通道中发生了颗粒的迁移,这似乎反映了Serge-Silberberg现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cross-sectional of capacitance measurement in-transition of particle concentration in microchannel system
In a present study, capacitance sensing is used as a visualization method for determination of dielectric permittivity distribution in microchannel system from external capacitance measurement. The microchannel had fabricated using micro-electro-mechanical-systems (MEMS) advanced technology which has two inlets and outlets and five cross-sections that each cross-section was embedding with 12 electrodes pair that connected to the microchannel system. The capacitance sensing had measured at cross-section III and V at different condition of inlets injection which cross-section III is located at the center of microchannel while cross-section V is nears the outlets. The dynamic behaviors of 6.0µm of polystyrene particles and deionized water are investigated by using capacitance sensing and particles concentration distribution in a presence of non-uniform electric fields of micro electrodes are studied in details. The permittivity and concentration of particles in term of a particle volume fraction are calculated at different zone of the microchannel area measurement. The microchannel area measurement are divided into three different zones which zone I is a measurement near a wall, zone II is a measurement halfway between centerlines and the wall and zone III is a measurement at the centerlines of microchannel system. The particles are more concentrate in zone I and zone II which is the area between centerlines of microchannel and near the wall that indicates a migration of particles are happen in the microchannel that seems to be reflect to the Serge-Silberberg phenomenon.
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