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Analysis of the transitions between flow patterns in open-channel lateral cavities with increasing aspect ratio

机译:随着纵横比的开放通道横向腔流动模式的转变分析

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摘要

The flow pattern within a storage zone governs the efficiency of passive scalar accumulation, spreading and homogenization. The present paper aims at characterizing experimentally the evolution of this flow pattern in a simplified open-channel lateral cavity with twenty increasing horizontal aspect ratio, focusing on the transition between the different flow patterns. Four main flow types are observed and detailed herein with, as the aspect ratio gradually increases: two cells aligned along the main stream axis, one unique cell, two cells aligned transversally and finally a more complex 3D pattern in the second cell. Quantitative characteristics of these cells are extracted from the velocity fields measured in the cavity. A 2D angular momentum balance is then applied that explains the transitions between these flow types and proves to be able to predict the flow patterns reported in the literature.
机译:存储区域内的流动模式控制被动标量累积,扩散和均匀化的效率。 本文旨在通过实验地表征在简化的开口通道横向腔中具有二十个水平纵横比的简化开口通道横向腔中的进化,聚焦在不同流动模式之间的过渡。 随着纵横比逐渐增加,观察到四种主要流量类型:沿主流轴线,一个独特的单元,两个细胞横向排列的两个细胞,最后是在第二单元中的两个细胞。 这些细胞的定量特征从腔中测量的速度场中提取。 然后应用2D角动量平衡,该平衡解释了这些流程类型之间的过渡并证明能够预测文献中报告的流动模式。

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