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Effect of high frequency ultrasound on micromixing efficiency in microchannels

机译:高频超声对微通道内微混合效率的影响

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In the present work, an investigation on the effect of high frequency ultrasound wave on micromixing in the studied microchannels was carried out. Three types of microchannels with different shapes are examined. A 1.7 MHz piezoelectric transducer (PZT) was employed to induce the vibration in these microchannels through an indirect contact. A method based on the Villermaux-Dushman reaction was employed to study the micromixing in these microchannels. The segregation intensity was determined for layouts with and in the absence of ultrasound irradiation. Further, the effect of ultrasound waves, in various flow rates and initial concentrations of acid, on the segregation index (X_s) and micromixing time (t_m) was investigated. The experimental results showed that the ultrasound waves have a significant influence on product distribution and segregation index at various flow rate ratios. The data obtained in all cases showed that the segregation index was reduced when the flow rate ratios were increased. Also the results demonstrate that in spite of a low energy consumption of PZT, the relative segregation index improved up to 18-36% at various flow rate ratios.
机译:在目前的工作中,对高频超声波对所研究的微通道中的微混合的影响进行了研究。检查了三种具有不同形状的微通道。使用1.7 MHz压电换能器(PZT)通过间接接触在这些微通道中引起振动。采用基于维勒莫-杜什曼反应的方法研究这些微通道中的微混合。在有和没有超声波照射的情况下,确定布局的偏析强度。此外,研究了超声波在各种流速和酸的初始浓度下对偏析指数(X_s)和微混合时间(t_m)的影响。实验结果表明,在不同的流量比下,超声波对产品的分布和偏析指数都有很大的影响。在所有情况下获得的数据表明,当流速比增加时,偏析指数降低。结果还表明,尽管PZT的能耗低,但在不同的流量比下,相对偏析指数却提高了18-36%。

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