Computational Fluid Dynamics of Mixing Performance in Microchannel

S. Termizi, S. R. Shukor
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Abstract

In microchannel, fluid viscous effect becomes dominant, and the micro-flow typically falls in laminar regime. Mixing of fluid in the absence of turbulence is a slow molecular process as it is solely dependent on diffusion. Fast and complete mixing of relevant fluids is of crucial importance in many chemical engineering processes, thus computational fluid dynamics simulation on mixing in microchannel is the main topic in this chapter. The simulation was based on laminar flow and convective diffusion equation model. The factors affecting the mixing performance in microchannel was further simulated. The finding provides some insight of transport phenomena on mixing in microchannel.
微通道混合性能的计算流体力学
在微通道中,流体粘性效应占主导地位,微流动以层流形式为主。在没有湍流的情况下,流体的混合是一个缓慢的分子过程,因为它完全依赖于扩散。在许多化工过程中,相关流体的快速完全混合是至关重要的,因此本章主要研究微通道中混合的计算流体动力学模拟。模拟基于层流和对流扩散方程模型。进一步模拟了影响微通道内混合性能的因素。这一发现对微通道中混合的输运现象提供了一些见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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