Optimization of structure and working parameters of Y type micro-mixer in two-phase pulsating mixing

Cong Wang, Sihu Li, Zhi-Gang Yang, Liu Guojun, Tian Zhao, Xu Yang
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Abstract

In order to improve the mixing efficiency of different reactants in microscale,a study on optimization of the structure and working parameters of the Y type pulsing micro mixer is conducted,in which the effects of the structure and parameters on mixing performance are taken into consideration.By simulation analysis,the channel section size,entrance angle,entrance flow rate and pulsation frequency are optimized.Based on the optimized structure and working parameters,a test prototype was made in lab.Using chemical reaction probe method,the prototype is tested.After detecting the size and distribution of gold nanoparticles by controllable synthesis,the mixing performance is evaluated synthetically.The test results indicate that when the entrance flow rate and working frequency are ascertained,there exist corresponding optimum values of the section size and flow rate of the Y type pulsing micro mixer.The entrance flow rate and working frequency are important parameters which influence each other.A certain flow rate corresponds to an optimum mixing frequency.
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两相脉动混合中Y型微型混合器结构及工作参数的优化
为了提高微尺度下不同反应物的混合效率,对Y型脉冲微型混合器进行了结构和工作参数的优化研究,考虑了结构和参数对混合性能的影响。通过仿真分析,优化了通道截面尺寸、入口角、入口流量和脉动频率。根据优化后的结构和工作参数,在实验室制作了试验样机。采用化学反应探针法对样机进行了测试。在对可控合成金纳米颗粒的粒径和分布进行检测后,对混合性能进行综合评价。试验结果表明,当入口流量和工作频率确定时,Y型脉冲微型混合器的截面尺寸和流量存在相应的最佳值。入口流量和工作频率是相互影响的重要参数。一定的流量对应于最佳的混合频率。
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