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An immersed boundary method for simulations of flow and mixing in micro-channels with electro kinetic effects

机译:电气动力学效应微通道模拟流动和混合的浸入边界方法

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摘要

Immersed boundary method (IBM) is a methodology in which any real stationary or moving complex bodies in flow or heat transfer or mixing field is treated by distinct forcing functions introduced in the respective governing equations, thereby its presence is dealt with much easiness in the computational domain. This work proposes an extension of an IBM based on discrete forcing approach to simulate pressure driven electro-osmotic flow and mixing enhancement in constricted micro channels. The fractional-step based temporal discretisation and finite-volume basedspatial discretisation on a staggered mesh are used to solve the governing equations. Concentration forcing function is a parameter, which is newly defined in this model to satisfy the no-flux boundary condition for species concentration on the IB and is introduced in convection-diffusion equation. The present computational model is validated with the published experimental and numerical results in the literature and finally some sample results are also exemplified.
机译:浸没的边界法(IBM)是一种方法,其中通过在各个控制方程中引入的不同强制功能来处理流动或传热或混合场中的任何真实固定或移动复合体,从而在计算中削弱其存在领域。该工作提出了基于离散强制方法的IBM扩展,以模拟压力驱动的电渗透流和收缩微通道中的混合增强。基于分数的基于阶梯的时间离散化和有限体积基于交错网格的分离子分散来解决控制方程。浓缩强制功能是在该模型中新定义的参数,以满足IB上的物种浓度的无通量边界条件,并在对流扩散方程中引入。本发明的计算模型用文献中发表的实验和数值结果验证,最后还示例了一些样本结果。

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