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ELECTROOSMOTIC FLOW SEPARATION IN A CORRUGATED MICRO-CHANNEL : A NUMERICAL STUDY

机译:波纹微通道中的电渗流分离:数值研究

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A two dimensional numerical study is made on the elec-troosmotic flow separation and vortex formation in a symmetric wavy microano channel filled with a Newtonian, incompressible electrolyte. Flow domain is modelled by two superimposed sinusoidal functions which is mapped into a simpler rectangular computational domain using a suitable coordinate transformation. The distributions of flow field and electric potential are obtained by solving a coupled set of nonlinear governing equations involving Poisson-Nernst-Planck equation and Navier-Stokes equation using finite volume method. Threshold value of the scaled wave amplitude for flow reversal is obtained for fixed Debye-Hiickel parameter and solute strength where flow separation plays a vital role for micromixing which can be a major interest for many research problems of biological flows.
机译:对充满牛顿不可压缩电解质的对称波浪形微/纳米通道中的电渗流分离和涡流形成进行了二维数值研究。通过两个叠加的正弦函数对流域建模,并使用适当的坐标变换将其映射到一个更简单的矩形计算域中。通过使用有限体积法求解包含泊松-能斯特-普朗克方程和Navier-Stokes方程的非线性控制方程对的耦合集,可以获得流场和电势的分布。对于固定的Debye-Hiickel参数和溶质强度,获得了用于逆流的比例波幅度阈值,其中流分离对于微混合起着至关重要的作用,这可能是许多生物流研究问题的主要关注点。

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