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Analysis of Hydraulic Mixing Efficiency in Widespread Models of Micromixers

机译:微混合器广泛模型中液压混合效率分析

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In this paper, we present the results of a systematic numerical study of the flow and mixing modes of fluids in micromixers of various configurations, in particular, an analysis of passive micromixers, the most widely used in practice, as well as the main methods to intensify mixing. The advantages of microstructure reactors can significantly reduce reaction times and increase productivity compared to traditional bulk reactors. Four different geometries of micromixers, including the straight T-shaped microchannel, were considered. The effect of the geometrical patterns of micromixers, as well as of the Reynolds number on flow regimes and mixing efficiency were analyzed. The Reynolds number varied from 1 to 300. Unlike other studies, the efficiency of the considered mixers was for the first time compared with the cost of pressure loss during pumping. As a result, the efficiency of the most optimal micromixer in terms of hydraulic mixing and the optimal operation ranges were determined. It was shown that the maximum normalized mixing efficiency in the entire range of Re numbers was noted for mixer, in which a vortex-based intensification of mixing occurs due to the flow swirling in cylindrical chambers. This mixer allows mixing the fluids 600 times more efficiently than a straight T-mixer, while all other conditions being equal.
机译:在本文中,我们介绍了各种配置的微混合器中流体流动和混合模式的系统数值研究结果,特别是对被动微混合器的分析,在实践中最广泛使用,以及主要方法强化混合。与传统的散装反应器相比,微观结构反应器的优点可以显着降低反应时间并提高生产率。考虑了四种不同几何形状,包括直T形微通道。分析了微混合器的几何图案以及雷诺数对流动制度和混合效率的影响。与其他研究不同,雷诺数因1至300而异。与泵送期间的压力损失成本相比,考虑混合器的效率是不同的。结果,确定了在液压混合和最佳操作范围方面最佳的微混合器的效率。结果表明,对于混合器,注意到整个RE系列范围内的最大归一化混合效率,其中由于圆柱形腔室中的流动旋转,发生了基于涡旋的混合强化。该混合器允许将流体更有效地混合而不是直的T型混合器,而所有其他条件相等。

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