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一种混合单元沿错流方向堆叠的被动式微混合器的混合性能

Mixing Performance of a Passive Micro-Mixer with Mixing Units Stacked in Cross Flow Direction.

作者信息

Juraeva Makhsuda, Kang Dong-Jin

机构信息

School of Mechanical Engineering, Yeungnam University, Gyoungsan 712-749, Korea.

出版信息

Micromachines (Basel). 2021 Dec 9;12(12):1530. doi: 10.3390/mi12121530.

Abstract

A new passive micro-mixer with mixing units stacked in the cross flow direction was proposed, and its performance was evaluated numerically. The present micro-mixer consisted of eight mixing units. Each mixing unit had four baffles, and they were arranged alternatively in the cross flow and transverse direction. The mixing units were stacked in four different ways: one step, two step, four step, and eight step stacking. A numerical study was carried out for the Reynolds numbers from 0.5 to 50. The corresponding volume flow rate ranged from 6.33 μL/min to 633 μL/min. The mixing performance was analyzed in terms of the degree of mixing () and relative mixing energy cost (). The numerical results showed a noticeable enhancement of the mixing performance compared with other micromixers. The mixing enhancement was achieved by two flow characteristics: baffle wall impingement by a stream of high concentration and swirl motion within the mixing unit. The baffle wall impingement by a stream of high concentration was observed throughout all Reynolds numbers. The swirl motion inside the mixing unit was observed in the cross flow direction, and became significant as the Reynolds number increased to larger than about five. The eight step stacking showed the best performance for Reynolds numbers larger than about two, while the two step stacking was better for Reynolds numbers less than about two.

摘要

提出了一种新型的被动式微混合器,其混合单元沿错流方向堆叠,并对其性能进行了数值评估。当前的微混合器由八个混合单元组成。每个混合单元有四个折流板,它们在错流和横向方向交替排列。混合单元以四种不同方式堆叠:一步堆叠、两步堆叠、四步堆叠和八步堆叠。对雷诺数从0.5到50进行了数值研究。相应的体积流量范围为6.33μL/min至633μL/min。从混合程度()和相对混合能量成本()方面分析了混合性能。数值结果表明,与其他微混合器相比,混合性能有显著提高。混合性能的提高是通过两种流动特性实现的:高浓度流体对冲折流板壁以及混合单元内的涡旋运动。在所有雷诺数下都观察到高浓度流体对冲折流板壁的现象。在错流方向观察到混合单元内的涡旋运动,并且随着雷诺数增加到大于约5时变得显著。对于雷诺数大于约2的情况,八步堆叠表现出最佳性能,而对于雷诺数小于约2的情况,两步堆叠表现更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5172/8705926/58719f9a44a9/micromachines-12-01530-g001.jpg

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