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首页> 外文期刊>Nuclear engineering and technology >THEORETICAL STUDY OF MOTION OF SMALL SPHERICAL AIR BUBBLES IN A UNIFORM SHEAR FLOW OF WATER
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THEORETICAL STUDY OF MOTION OF SMALL SPHERICAL AIR BUBBLES IN A UNIFORM SHEAR FLOW OF WATER

机译:均匀剪切流中小球形气泡运动的理论研究

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A simple Couette flow velocity profile with an appropriate correlation for the free terminal rise velocity of a single bubble in a quiescent liquid can produce reliable results for the trajectories of small spherical air bubbles in a low-viscosity liquid (water) provided the liquid remains under uniform shear flow. Comparison of the model adopted in this paper with published results has been accomplished. Based on this study it has also been found that the lift coefficient in water is higher than its typical value in a high-viscosity liquid and therefore a modified correlation for the lift coefficient in a uniform shear flow of water within the regime of the Eotvos number 0.305 <= Eo <= 1.22 is also presented. Copyright (C) 2015, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:对于静态液体中单个气泡的自由末端上升速度具有适当相关性的简单库埃特流速分布图,对于低粘度液体(水)中的小球形气泡的轨迹,只要液体保持在较低的压力下,就可以获得可靠的结果剪切流均匀。本文采用的模型与已发表的结果进行了比较。基于这项研究,还发现水中的升力系数高于其在高粘度液体中的典型值,因此,在Eotvos数范围内的均匀剪切流中,升力系数具有修正的相关性。还给出了0.305 <= Eo <= 1.22。版权所有(C)2015,由Elsevier Korea LLC代表韩国核协会出版。

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