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Numerical investigation of quasi-static bubble growth and detachment from submerged orifices in isothermal liquid pools: The effect of varying fluid properties and gravity levels

机译:等温液池中准静态气泡生长和从水下孔口脱离的数值研究:流体特性和重力水平变化的影响

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摘要

The present investigation, identifies the exact quantitative effects of fundamental parameters, on the detachment characteristics of isolated bubbles, emanating quasi-statically from submerged orifices into isothermal liquid pools. For this purpose, a Volume of Fluid (VOF) based interface capturing approach is further improved, for the conduction of axisymmetric and 3D numerical experiments on adiabatic bubble growth dynamics. The predictions of the model, are quantitatively validated against literature available experimental data, showing excellent agreement. Two series of numerical experiments are performed, quantitatively exploring the parametric effects of the liquid phase properties in five different gravity levels, and the effect of the gravity vector direction inclination angle, respectively. It is found that the bubble detachment characteristics, are more sensitive in the variation of the surface tension, liquid phase density and gravity, while the effect of liquid phase dynamic viscosity is generally minimal. From dimensionless analysis, two correlations are derived, which for the examined range of Eötvos numbers, are able to predict the equivalent bubble detachment diameter and the bubble detachment time, respectively. It is also found that the bubble detachment characteristics, reduce significantly as the gravity vector direction gradually deviates from being parallel to the bubble injection orifice, following a non-linear decrease.
机译:本研究确定了基本参数对隔离的气泡的分离特性的精确定量影响,这些气泡从浸入孔口向静态液体池中准静态散发。为此,基于绝热气泡生长动力学的轴对称和3D数值实验的进行进一步改进了基于流体体积(VOF)的界面捕获方法。该模型的预测,根据现有的文献实验数据进行了定量验证,显示出极好的一致性。进行了两个系列的数值实验,分别定量研究了在五个不同重力水平下液相特性的参数效应,以及重力矢量方向倾斜角的效应。发现气泡的分离特性对表面张力,液相密度和重力的变化更为敏感,而液相动态粘度的影响通常最小。从无量纲分析中,可以得出两个相关性,对于所检查的Eötvos数范围,它们可以分别预测等效气泡分离直径和气泡分离时间。还发现随着非线性矢量的下降,重力矢量方向逐渐偏离平行于气泡注入孔,气泡分离特性显着降低。

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