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EXPERIMENTAL AND NUMERICAL ANALYSES OF UNSTEADY FLOW REGIMES AND MIXING IN A MICRO T-MIXER

机译:微型T混合器非定常流态与混合的实验与数值分析。

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Despite the very simple geometry, T-shaped micro-mixers are characterized by different and complex laminar flow regimes. In the present work, experiments and direct numerical simulations are employed jointly to investigate unsteady periodic flow regimes, viz. the asymmetric and symmetric regimes. The first is characterized by a periodic dynamics of the three-dimensional structures and by a high degree of mixing, while in the second the flow always maintains a double mirror symmetry in the mixing channel, which causes a dramatic decrease of the mixing performance. A methodology, allowing us to quantitatively compare the numerical predictions with experimental flow visualizations, is used to investigate these unsteady regimes and to evaluate the relevant frequencies and the degree of mixing. In both regimes the characteristic non-dimensional frequency, based on the bulk velocity and hydraulic diameter of the mixing channel, increases with the Reynolds number, but a significant discontinuity is found at the transition from the first to the second regime.
机译:尽管几何形状非常简单,但T型微型混合器的特点是具有不同且复杂的层流状态。在目前的工作中,结合实验和直接数值模拟来研究非稳态周期性流动状态,即。不对称和对称制度。第一个特征是三维结构的周期性动态变化和高度混合,而第二个特征是流动始终在混合通道中保持双镜对称,这会导致混合性能急剧下降。一种允许我们将数值预测与实验流动可视化进行定量比较的方法被用来研究这些不稳定的情况,并评估相关的频率和混合程度。在这两种情况下,基于混合通道的整体速度和水力直径的特征性无量纲频率都随雷诺数的增加而增加,但是在从第一阶段过渡到第二阶段的过程中发现了明显的不连续性。

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