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Mechanism of small bubble breakup in an unbaffled stirred vessel

机译:小泡沫破碎机制在一个未达到的搅拌容器中的机制

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The present study investigated the mechanism of small bubble breakup in an unbaffled vessel stirred by a 4-blade paddle impeller. Bubbles were injected underneath the rotating blades. Numerical simulation and experimental observations were performed to investigate the related phenomena. The Volume of Fluid (VOF) method was utilized to simulate a gas-liquid multiphase flow. The injected bubbles were broken behind the impeller blade, where they were transported due to a decreasing pressure gradient caused by the impeller rotation. At the behind of the blade, bubbles were elongated and fragmented due to the trailing vortices developing from the rear surface of blade. The fragmented bubbles were entrapped at the cores of trailing vortices, and then floated up in the space where the trailing vortices became weak. The size of the broken bubbles was dependent on the impeller rotation rate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究研究了由4叶片桨叶搅拌的未粘合的容器中的小气泡分解的机理。 在旋转刀片下面注入气泡。 进行数值模拟和实验观察以研究相关现象。 利用流体(VOF)方法的体积来模拟气液多相流。 注入的气泡在叶轮叶片后面破裂,在那里由于由叶轮旋转引起的压力梯度降低而运输。 在叶片的后面,由于从叶片后表面开发的尾部涡流而伸长气泡并碎片。 碎片的气泡被捕获在尾随涡旋的芯处,然后在尾随涡流变弱的空间中漂浮。 破碎气泡的尺寸取决于叶轮旋转速率。 (c)2018年elestvier有限公司保留所有权利。

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