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Local investigations on the gas-liquid mass transfer around Taylor bubbles flowing in a meandering millimetric square channel

机译:在蜿蜒的毫米方通道中流动的泰勒气泡周围的气液传质的局部研究

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摘要

Gas-liquid mass transfer around Taylor bubbles moving in a meandering millimetric square channel was locally visualized and characterized in the present study. For that, the colorimetric technique proposed by Dietrich et al. (2013) was implemented. With this technique, the evolution of equivalent oxygen concentration fields in the liquid slugs passing through one and several bends was firstly described. In particular, it was observed how the flow structure (recirculation zones) inside the liquid slugs were twisted and split by the periodic bends (centrifugal effect), until reaching, after several bends, a uniform O2 concentration inside the liquid slugs. The influence of the “turning point”, joining two “straight” sections of meandering channel was also highlighted: a slowing down of the gas-liquid mass transfer was clearly shown. Volumetric mass transfer coefficients were determined at last by fitting the experimental axial profiles of averaged oxygen concentrations in the liquid slugs (before the turning point) with the ones predicted by a classical plug-flow model.
机译:在本研究中,局部可视化并表征了在蜿蜒的毫米方通道中移动的泰勒气泡周围的气液质量传递。为此,Dietrich等人提出了比色技术。 (2013)已实施。利用这种技术,首先描述了通过一个和几个弯头的液团中等效氧浓度场的演变。特别地,观察到液体块内部的流动结构(再循环区域)如何通过周期性弯曲(离心作用)扭曲和分裂,直到经过几次弯曲后,液体块内部的O2浓度达到均匀。还强调了“拐点”的影响,将曲折通道的两个“笔直”部分连接起来:清楚地显示了气液传质的减慢。最后,通过将液体团块中(转折点之前)平均氧气浓度的实验轴向轮廓与经典塞流模型预测的轴向轮廓拟合,来确定体积传质系数。

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