首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels >FULLY-COUPLED MODELLING OF ELECTROKINETIC FLOW AND MIGRATION OF ELECTROLYTES IN MICROFLUIDIC DEVICES
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FULLY-COUPLED MODELLING OF ELECTROKINETIC FLOW AND MIGRATION OF ELECTROLYTES IN MICROFLUIDIC DEVICES

机译:微流体装置中电动流动流动和电解质迁移的完全耦合建模

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We investigate the electrokinetic flow and mass transport in a microchannel junction, serving as an injector of a micro-electrophoresis device. In order to consider all essential features of this complex system, the electrical situation, the fluid dynamics, and the (physical) chemistry is taken into account. The electrical situation is modeled by a combination of an electrostatic and an electrodynamic approach. The fluid dynamics can be described by the Navier-Stokes equations, extended by an additional force term. The chemistry of the system is represented by source terms in the mass transport equations. Moreover, the interaction between the buffer concentration and the physicochemical properties of the channel wall is taken into consideration by an empirical approach. All equations are encoded in a dimensionless form so that dimensionless groups control the problem. Approximative analytical solutions for the phenomena within the electrical double layer can be found and, thus, we can reduce the numerical costs due to an asymptotic matching procedure. The models are implemented in a Finite Element Method (FEM) code and time-dependent, two-dimensional simulations are performed. The results of the simulations show the strong coupling between the involved physicochemical processes.
机译:我们研究了微通道结中的电动流量和质量传输,用作微电泳装置的注射器。为了考虑这种复杂系统的所有基本特征,考虑电气情况,流体动力学和(物理)化学。电气情况通过静电和电动方法的组合来建模。可以通过额外的力项延伸的Navier-Stokes方程来描述流体动力学。系统的化学由大规模传输方程中的源术语表示。此外,通过经验方法考虑缓冲浓度与通道壁的物理化学性质之间的相互作用。所有等式都以无量纲形式编码,使得无量纲组控制问题。可以找到用于电双层内的现象的近似分析解决方案,因此,我们可以降低由于渐近匹配程序引起的数值成本。该模型以有限元方法(FEM)代码和时间相关的,执行二维模拟。模拟的结果显示涉及的物理化学过程之间的强耦合。

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