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Experimental observations of bubbling regimes at in-line multi-orifice bubblers

机译:在线多孔泡泡泡制的实验观察

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摘要

Bubble formation and bubbling regimes are well-characterized for the cases of single-orifice bubblers and industrial perforated plates. However, bubbling regimes from bubblers with multiple in-line orifices remain poorly described. Here, we investigate the dynamics of bubble formation at both single-orifice and multi-orifice bubblers, with one, three, five and nine in-line orifices in an 80-cm-long bubbler. We use high-speed videography and image processing to identify the effects of bubbler volume, and the number, spacing, and diameter of orifices, on bubbling regimes, bubble period, and bubble formation time. We identify five main bubbling regimes based on synchronization among orifices, and discuss the parameters affecting the bubbling dynamics. Decreasing bubbler volume leads to a decrease in bubble volume and bubble period, and enhances synchronization. Increasing orifice diameter leads to an increase in bubble volume and enhances synchronization. Spacing between orifices doesn't play an important role in determining the bubbling regime. Based on the experimental observations, we develop new bubbling regime maps constructed using the dimensionless Capacitance number and Weber number. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:泡沫形成和鼓泡制度均具有很好的特征,用于单孔喷泡器和工业穿孔板的情况。然而,来自具有多种型号孔口的鼓泡器的鼓泡制度仍然仍然清楚。在这里,我们研究了一个孔口和多孔喷泡器的气泡形成的动态,其中一个,三个,五个和九个在线孔在80cm长的吸水器中。我们使用高速摄像图像和图像处理来识别鼓泡器体积的影响,以及孔口的数量,间距和直径,在鼓泡制度,泡沫时段和泡沫形成时间。我们根据孔之间的同步确定五个主要冒泡制度,并讨论影响冒泡动力学的参数。降低鼓泡体积导致气泡体积和气泡周期的降低,并增强同步。增加孔口直径导致气泡体积的增加并增强同步。孔口之间的间距在确定冒泡制度方面不会发挥重要作用。基于实验观察,我们开发了使用无量纲电容数和韦伯号构造的新鼓泡制度图。 (c)2019年作者。 elsevier有限公司出版

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