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Numerical Simulation of Laminar Mixing Surfaces in Converging MicroChannel Flows

机译:汇聚微通道流动中层流混合表面的数值模拟

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In this work, we report on the impact of flow pulsatility on the laminar mixing surface/interface formed between two converging microchannel flows. The motivation behind the study is to assess the potential for pulsatility as a possible MEMS-mixing strategy. A 3-D computational model of the converging flow at a 90? junction is developed using the Fluent6 CFD software and the volume-of-fluid algorithm is used to track time-dependent behavior of the interface downstream of the junction. Results thus far have shown that for certain parametric regimes a complex, evolving interfacial distortion can form which propagates and persists downstream of the junction. Time-series for the total interfacial area and the interfacial motion have been extracted from numerical data and spectral analyses have been performed; some interesting nonlinear behavior has been observed. Of particular importance, the results also show that the complexity of the interfacial structure is only significant at higher frequencies (order of kHz) which is appropriate for MEMS-based pumping devices.
机译:在这项工作中,我们报告了流量脉动对两个会聚的微通道流之间形成的层流混合表面/界面的影响。该研究背后的动机是评估脉搏性作为一种可能的MEMS混合策略的潜力。 90?时会聚流动的3-D计算模型。使用Fluent6 CFD软件开发了路口,路口流量算法用于跟踪路口下游接口的时间相关行为。迄今为止的结果表明,对于某些参数形式,可能会形成复杂的,不断发展的界面畸变,并在交界处下游传播并持续存在。从数值数据中提取了总界面面积和界面运动的时间序列,并进行了光谱分析;已经观察到一些有趣的非线性行为。特别重要的是,结果还表明,界面结构的复杂性仅在适用于基于MEMS的泵浦设备的较高频率(kHz量级)下才有意义。

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