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Fluid Dynamics and Transfer Processes in Bended Microchannels

机译:弯曲微通道中的流体动力学和传递过程

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The understanding of the flow processes in microchannels and micromixers is essential for the design of microfluidic devices like microreactors or analytical equipment. We have performed a systematic numerical CFD-study of mixing and mass transfer in sharp 90° bends and heat transfer in T-joints to obtain a detailed insight into the flow patterns and corresponding transfer processes in a wide range of Reynolds numbers. With increasing flow velocity, the straight laminar flow starts to form symmetrical vortices in the bend, at the entrance of the mixing channel, and in T-joints. The vortices enhance the transport processes like heat and mass transfer in the channels significantly. The influence of the geometry and the flow conditions is shown by an analytical estimation of the relevant forces. The appearance of convective transport processes is used for the definition of microflows, which are controlled by viscous forces and diffusive transfer processes.
机译:了解微通道和微混合器中的流动过程对于微流控设备(如微反应器或分析设备)的设计至关重要。我们对尖锐的90°弯曲处的混合和传质以及T型接头中的传热进行了系统的数值CFD研究,以深入了解各种雷诺数下的流动模式和相应的传热过程。随着流速的增加,笔直的层流开始在弯道,混合通道的入口和T型接头处形成对称的涡流。涡流显着增强了通道中的传热和传质等传输过程。几何形状和流动条件的影响通过对相关力的分析估计来显示。对流传输过程的出现用于定义微流,它由粘性力和扩散传递过程控制。

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