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Numerical Simulation of the Scalar Mixing Characteristics in Three-dimensional Microchannels

机译:三维微通道中标量混合特性的数值模拟

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Based on the transport phenomena theory, the passive mixing of water and ethanol in different three-dimensional microchannels is simulated numerically. The average variance of water volume fraction is used to index the mixing efficiency in the cases with different Reynolds number and different fabricated mixers. The results show that the efficiency of liquid mixing is progressively dependent on the convective transport as the Reynolds number increases. The efficiency of serpentine microchannel decreases with the increasing Reynolds number in the laminar regime. Altering the aspect ratio of channel inlet section has no significant effect on the mixing efficiency. Increasing the area of channel inlet section will cause the decrease of the mixing efficiency. The mixing in serpentine channels is the most efficient among three different mixers because of the existence of second flow introduced by its special structure.
机译:基于传输现象理论,对水和乙醇在不同三维微通道中的被动混合进行了数值模拟。在不同的雷诺数和不同的混合器的情况下,水体积分数的平均方差用于确定混合效率。结果表明,随着雷诺数的增加,液体混合的效率逐渐取决于对流输运。蛇形微通道的效率随着层流状态中雷诺数的增加而降低。改变通道入口部分的长宽比对混合效率没有明显影响。增大通道入口部分的面积将导致混合效率降低。蛇形通道中的混合是三种不同混合器中效率最高的,这是由于其特殊结构引入了第二股流体。

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