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Analysis of mass transfer performance of micromixer device with varying confluence angle using CFD

机译:用CFD改变汇合角度的微混销器装置的传质性能分析

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The computational fluid dynamics (CFD) study on micromixers in this paper illustrates the effect of confluence angle on mixing performance at different Reynolds numbers and flow rate ratios. The mixing performance parameters such as mixing quality and effectiveness increases with the increase in Reynolds number for all the micromixer geometries. For any value of Reynolds number, the angle of confluence is found to have a significant effect on flow behavior in the mixing channel and thus on mass transfer. The formation of vortices and the interlacing of fluid streams are identified as the favorable phenomena due to which mass transfer or mixing of fluid streams is enhanced. The mixing effectiveness is mostly observed to be high in case of unequal flow rates in the two feed/inlet channels. The optimum value of confluence angle depends of flow rate ratio. When flow rate ratio is high, T-shaped micromixer (θ = 180°) provides better performance while for other ratios, micromixers with relatively large angles of confluence are found more suitable.
机译:本文中的微囊夹的计算流体动力学(CFD)研究说明了汇合角对不同雷诺数和流量比在混合性能下的影响。混合性能参数,例如混合质量和有效性随着所有微囊物几何形状的雷诺数的增加而增加。对于雷诺数的任何值,发现汇合角度对混合通道中的流动性具有显着影响,从而对传质。涡流的形成和流体流的交织被鉴定为有利的现象,因为流体流的传质或混合增强。在两个进料/入口通道中的不等流速的情况下,大多数观察到混合效果高。汇合角度的最佳值取决于流速比。当流量比为高时,T形微混合器(θ= 180°)提供更好的性能,而其他比率,具有相对较大的汇合角度的微混件更合适。

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