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NUMERICAL SIMULATION OF AN ELECTROOSMOTIC MICROMIXER

机译:电磁微混合器的数值模拟

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摘要

We present a micronixer fabricated using MEMS technology which takes advantage of electroosmosis to mix fluids. A time dependent electric field is applied and the resulting electroosmo-sis perturbs the low Reynolds number flow. It is shown that the electric field can be deemed quasi-steady and the electroosmotic slip boundary condition can be applied when the incompressible Navier Stokes equation is solved. Both the electric field and the electroosmotic flow are simulated numerically. Study of the particle traces shows folding and stretching of material lines, and a positive Lyapunov exponent is found which indicates chaotic-like mixing.
机译:我们介绍了一种使用MEMS技术制造的微刀,它利用电渗技术来混合流体。施加与时间有关的电场,并且所产生的电渗扰动了低雷诺数流。结果表明,当求解不可压缩的Navier Stokes方程时,可以认为电场是准稳态的,并且可以应用电渗滑移边界条件。数值模拟了电场和电渗流。对粒子痕迹的研究显示出材料线的折叠和拉伸,并且发现了一个正Lyapunov指数,这表明混沌状的混合。

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