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Numerical simulation of diffusion process in T-shaped micromixer using Shan-Chen Lattice Boltzmann Method

机译:使用Shan-Chen Lattice Boltzmann方法模拟T形微混合器扩散过程的数值模拟

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摘要

A multicomponent Lattice Boltzmann Method (LBM) scheme is employed to study the performance of a T-shaped micromixer with obstacles in its mam channel. This solution was proposed in order to speed-up the diffusive mixing process which occurs at very low-Reynolds flow regime. The multicomponent LBM was firstly validated against well-documented cases like the simulation of a static droplet and the layered two-dimensional flow in a channel. Then two-dimensional simulations of the T-mixer are conducted with different flow rates and obstacle layouts demonstrating the improvement of the device mixing efficiency induced by this solution. In addition, the results show a very good agreement with a previous study in which a commercial code was adopted and provide guidelines to conveniently place the obstacles in a T-shape micromixer. (C)2018 Elsevier Ltd All rights reserved.
机译:采用多组分晶格Boltzmann方法(LBM)方案来研究T形Micromixer在其MAM通道中的障碍物的性能。 提出了该解决方案以加速在非常低雷诺流动状态下发生的扩散混合过程。 首先验证多组分LBM,与良好记录的案例类似,如静态液滴和频道中的分层二维流动的模拟。 然后,T型混合器的二维模拟以不同的流速和障碍布局进行,证明了通过该溶液诱导的装置混合效率的提高。 此外,结果表明,与以前的研究表明,采用商业代码并提供了方便地将障碍物放在T形微混合器中的指导方针。 (c)2018 Elsevier Ltd保留所有权利。

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