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Innovative Design and Modeling of a Micromixer: Navier-Stokes and Convection-Diffusion Equations

机译:Micromixer的创新设计和建模:Navier-Stokes和对流扩散方程

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A micro mixer is a micrometric device capable to obtain a uniform distribution from several components of a mix. Such components can be fluids with different concentrations coming into the micro mixer and, by electro osmotic effects and physical perturbations on their path, are mixed forming another fluid with uniform density at the outlet. Some of their applications appear in biochemical micro-laboratories (lab-in-chip). Physical laws modeling a micro mixer are those of fluid mechanics (Navier-Stokes eqs.), as well as the convection-diffusion equation for current density and concentration. Velocity of fluid and electric field are related by means of the Helmholtz-Smoluchowski equation which is used to set certain boundary conditions. This paper presents two innovative designs of a micro mixer following electro osmotic principles in a geometry with obstacles for the fluid. Furthermore, known reports from literature are verified to validate the mathematical method and to do a comparison and appreciate the advantages of the proposed designs.
机译:微混合器是一种微米器件,能够从混合物的几个部件获得均匀的分布。这些组分可以是具有不同浓度的流体进入微混合器,并且通过电渗透效应和物理扰动在其路径上,混合在出口处形成具有均匀密度的另一个流体。他们的一些应用出现在生化微实验室(芯片上)。建模微混合器的物理法是流体力学(Navier-Stokes EQS)的法律以及用于电流密度和浓度的对流扩散方程。通过用于设置某些边界条件的Helmholtz-Smoluchowski等式,流体和电场的速度是相关的。本文介绍了在几何形状的电渗透原理之后的微混合器的创新设计,具有流体的障碍物。此外,验证了文献的已知报告以验证数学方法,并进行比较并欣赏所提出的设计的优势。

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