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Study of the interactions between rising air bubbles and vortex core of swirling water flow around vertical axis

机译:绕垂直轴旋转的水流中上升的气泡与涡旋核之间相互作用的研究

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摘要

The interactions between rising air bubbles and the vortex core of swirling water flows in a cylindrical tank are experimentally investigated. A stirring disc mounted at the center of the tank bottom is rotated to produce swirling water flows around the central (vertical) axis of the tank, and small air bubbles are successively released from tubules mounted near the stirring disc. The bubbles rise helically in the swirling water flow because of the buoyancy force, and some bubbles are entrained into the vortex core. The precessional amplitude of the vortex core is enhanced by the bubbles when the bubble flow rate Q(g) is very low. But it decreases with increasing Q(g) when Q(g) is larger than a certain value. In the horizontal cross-sections near the stirring disc, the bubbles make the water flow field nonaxisymmetric and reduce the water velocity. The water velocity variation due to the bubbles affects the shape of the vortex funnel formed at the water surface. (C) 2015 Elsevier Ltd. All rights reserved.
机译:实验研究了上升的气泡和圆柱形水箱中回旋水流的涡流核心之间的相互作用。旋转安装在罐底中央的搅拌盘,以产生绕罐中心(垂直)轴线旋转的水流,并且小气泡从安装在搅拌盘附近的小管中连续释放。由于浮力,气泡在涡旋的水流中呈螺旋状上升,并且一些气泡被夹带到涡流芯中。当气泡流速Q(g)非常低时,气泡会增加涡旋核心的进动幅度。但是当Q(g)大于某个值时,它会随着Q(g)的增加而减小。在搅拌盘附近的水平截面中,气泡使水流场成为非轴对称的,并降低了水的流速。由于气泡而引起的水速度变化会影响在水表面形成的漩涡漏斗的形状。 (C)2015 Elsevier Ltd.保留所有权利。

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