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首页> 外文期刊>Advances and Applications in Fluid Mechanics >OPTIMUM DESIGN OF A Y-CHANNEL MICROMIXER FOR ENHANCED MIXING ACCORDING TO THE CONFIGURATION OF OBSTACLES
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OPTIMUM DESIGN OF A Y-CHANNEL MICROMIXER FOR ENHANCED MIXING ACCORDING TO THE CONFIGURATION OF OBSTACLES

机译:根据障碍物的配置,用于混合的Y型通道微调器的优化设计

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摘要

Effective mixing plays an important role in microfluidics for biochemical applications. Owing to the small scale of the device and its entailing low Reynolds number, the mixing in microchannels proceeds very slowly. In this work, we optimize the configuration of obstacles in the Y-channel mixer in order to attain maximum mixing efficiency. Before the optimum design, mixing characteristics are investigated using unstructured grid CFD method. Then the analysis method is employed to construct the approximate analysis model to be used in the optimization procedure. The main optimization tool in the present work is sequential quadratic programming method. Using this approximate optimization procedure, we may obtain the optimum layout of obstacles in the Y-channel mixer in an efficient manner, for a maximum mixing efficiency.
机译:有效混合在生化应用的微流体中起着重要作用。由于该装置的规模小并且需要较低的雷诺数,因此微通道中的混合进行得非常缓慢。在这项工作中,我们优化了Y通道混合器中的障碍物配置,以实现最大混合效率。在进行最佳设计之前,使用非结构化网格CFD方法研究混合特性。然后,该分析方法被用于构造将在优化过程中使用的近似分析模型。当前工作中的主要优化工具是顺序二次规划法。使用这种近似优化程序,我们可以有效地获得Y通道混合器中障碍物的最佳布局,以实现最大混合效率。

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