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Measurements and simulations of time-dependent flow fields within an electrokinetic micromixer

机译:电动微混合器中随时间变化的流场的测量和模拟

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We investigate the flow field in an electrokinetic micromixer. The concept of the micromixer is based on the combination of an alternating electrical field applied to a pressure-driven base flow in a meander-channel geometry. The presence of the electrical field leads to an additional electro-osmotic velocity contribution, which results in a complex flow field within the meander bends. The velocity fields within the meander are measured by means of a microparticle-image velocimetry method. Furthermore, we introduce a mathematical model, describing the electrical and fluid-mechanical phenomena present within the device, and perform simulations comparable to the experiments. The comparison of simulations and experiments reveals good agreement, with minor discrepancies in flow topology, obviously caused by small but crucial differences between experimental and numerical geometries. In detail, simulations are performed for sharp corners of the bends, while in the experiments these corners are rounded due to the microfabrication process.
机译:我们研究电动微型混合器中的流场。微型混合器的概念基于在曲折通道几何形状中施加到压力驱动基流的交变电场的组合。电场的存在导致额外的电渗速度贡献,这导致曲折弯内的流场复杂。曲折内的速度场通过微粒图像测速法测量。此外,我们引入了数学模型,描述了设备中存在的电气和流体机械现象,并进行了与实验相当的仿真。模拟和实验的比较显示出良好的一致性,但在流动拓扑方面存在细微差异,这显然是由于实验几何形状和数值几何之间的微小但至关重要的差异所致。详细地,对弯头的尖角进行了仿真,而在实验中,由于微加工工艺,这些角被倒圆了。

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