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FLOW FIELD ANALYSIS OF DIELECTROPHORETICALLY-SUSPENDED PARTICLES

机译:介电悬浮颗粒的流场分析

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Understanding the fluid dynamics around a particle in suspension is important for a complete investigation of many hydrodynamic phenomena, including microfluidic models. A novel tool that has been used to analyze fluid velocity fields in microfluidics is micro-resolution particle image velocimetry (μPIV) [1], Dielectrophoresis (DEP) is a technique that can translate and trap particles by induced polarization in the presence of nonuniform electric fields. In this paper, DEP has been used to capture and suspend a single 10.1 μm diameter spherical particle in a microfluidic channel. μPIV is then used with smaller tracer particles (0.5μm) to investigate the hydrodynamics of fluid flow past the trapped particle.
机译:了解悬浮液中颗粒周围的流体动力学对于彻底研究许多流体动力学现象(包括微流体模型)非常重要。微分辨率粒子图像测速技术(μPIV)是一种用于分析微流体中流速场的新颖工具,介电泳(DEP)是一种可以在存在不均匀电的情况下通过感应极化来平移和捕获粒子的技术领域。在本文中,DEP已用于捕获和悬浮直径为10.1μm的单个球形颗粒,并将其悬浮在微流体通道中。然后将μPIV与较小的示踪剂颗粒(0.5μm)一起使用,以研究流过被捕集颗粒的流体的流体动力学。

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