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Bubble formation from an orifice in liquid cross-flow

机译:从液体交叉流动中的孔形成泡沫

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摘要

The formation of gas bubbles by submerged orifices in a cross-flowing liquid is encountered in many industrial applications. It is therefore important to understand the dynamics of bubble formation and to accurately predict the bubble detachment characteristics under such situations. In the present work, the process is numerically studied using the Local Front Reconstruction Method (LFRM), a Front Tracking Direct Numerical Simulation method that enables the simulation of interface merging and breakup. Experiments of bubble formation subjected to cross-flow induced shear are also performed to provide data for the validation of the numerical simulations. The predictions of the bubble shape and the detached bubble volume obtained by the numerical model show good agreement with the experimental results. The validated numerical model is then used to study the effects of volumetric gas flow rate and fluid physical properties on the bubble detachment characteristics under various shear rates in the quasi-static bubble growth regime. The simulation results show that the shear flow advances the bubble detachment and decreases the bubble size. Consequently, the bubble formation frequency and the detached bubble size can be controlled by exerting different shear rates. At higher shear rates, the simulated bubbles are highly deformed due to the drag force created by the tangential liquid flow and the influence of liquid properties on the bubble detachment characteristics becomes less significant.
机译:在许多工业应用中,遇到了在交叉流动液体中的浸没孔形成气泡的形成。因此,了解气泡形成的动态并准确地预测这种情况下的气泡脱离特性是重要的。在本作工作中,使用本地前重建方法(LFRM)进行数值研究该过程,前进的直接数值模拟方法,可以模拟界面合并和分析。还执行对经受交叉流动诱导剪切进行泡沫形成的实验,以提供用于验证数值模拟的数据。通过数值模型获得的气泡形状和分离的气泡体积的预测表现出良好的一致性与实验结果。然后用于验证的数值模型研究体积气体流速和流体物理性质对准静态气泡生长状态的各种剪切速率下的气泡分离特性的影响。仿真结果表明,剪切流程前进泡沫脱离并降低气泡尺寸。因此,可以通过施加不同的剪切速率来控制气泡形成频率和分离的气泡尺寸。在较高的剪切速率下,由于由切向液体流动产生的阻力,模拟气泡高度变形,并且液体性质对气泡脱离特性的影响变得不太显着。

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