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An immersed boundary-lattice Boltzmann method to simulate chaotic micromixers with baffles

机译:浸入边界晶格Boltzmann方法,用于模拟与挡板的混沌微观夹

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摘要

In this paper, a new immersed boundary-lattice Boltzmann method (IB-LBM) including velocity and mass flux correction is developed. In the framework of IB-LBM, Dirichlet condition (no-slip) is imposed by using velocity correction and the concentration correction is used for Neumann (mass flux) condition. Velocity correction is transformed into a forcing term and added to the momentum equation, and a mass source/sink is introduced to convection-diffusion equation representing concentration correction. Eliminating sophisticated mesh generation processes, simplicity and effectiveness while preserving numerical accuracy, are the major advantages of the presented method. The proposed method is well validated through its application to simulate chaotic micromixers with obstructions. Micromixers with three different shaped baffles were used to investigate the effect of baffles and the merit of the new IB-LBM. The mixing performance is evaluated by the mixing efficiency and the performance index The results indicate that regardless of the baffle shape, the mixing efficiency is enhanced by using baffles. Furthermore, as the distance between baffles decreases, the performance is more enhanced. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,开发了一种新的浸没边界晶格Boltzmann方法(IB-LBM),包括速度和质量磁通校正。在IB-LBM的框架中,通过使用速度校正施加Dirichlet条件(无滑动),并且浓度校正用于Neumann(质量磁通)条件。速度校正被转换成强制术语并添加到动量方程,并且引入了表示浓度校正的对流扩散方程的质量源/沉积。消除复杂的网格生成过程,在保持数值准确度的同时,是所提出的方法的主要优点。通过其应用验证了所提出的方法,以模拟具有障碍物的混沌微观镜。用三种不同形状挡板的微观夹用于探讨挡板和新IB-LBM的优点的影响。通过混合效率和性能指标评估混合性能,结果表明,无论挡板形状如何,通过使用挡板来增强混合效率。此外,随着挡板之间的距离减小,性能更高。 (c)2018年elestvier有限公司保留所有权利。

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