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Numerical Study of Electro-Osmotic Fluid Flow and Vortex Formation

机译:电渗流和涡旋形成的数值研究

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摘要

The phenomenon of electro-osmosis was studied by performing numerical simulations on the flow between parallel walls and at the nozzle microchannels. In this work, we propose a numerical approximation to perform simulations of vortex formation which occur after the passage of the fluid through an abrupt contraction at the microchannel. The motion of the charges in the solution is described by the Poisson–Nernst–Planck equations and used the generalized finite differences to solve the numerical problem. First, solutions for electro-osmotic flow were obtained for the Phan–Thien/Thanner model in a parallel walls channel. Later simulations for electro-osmotic flow were performed in a nozzle. The formation of vortices near the contraction within the nozzle was verified by taking into account a flow perturbation model.
机译:通过对平行壁之间和喷嘴微通道处的流动进行数值模拟,研究了电渗现象。在这项工作中,我们提出了一种数值近似方法来执行涡旋形成的模拟,该涡旋形成是在流体通过微通道处的突然收缩之后通过的。电荷在溶液中的运动由Poisson-Nernst-Planck方程描述,并使用广义有限差分来解决数值问题。首先,在平行壁通道中针对Phan–Thien / Thanner模型获得了电渗流的解决方案。后来在喷嘴中进行了电渗流的模拟。考虑到流量扰动模型,验证了喷嘴内收缩附近涡流的形成。

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