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Vortex shedding behind a rising bubble and two-bubble coalescence: A numerical approach

机译:涡流在上升的气泡和两个气泡的合并后脱落:一种数值方法

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In this work, we present the computational results on the wake instability in wobbling bubble regime as well as on the coalescence of two bubbles in different shape regimes. This is a continuation of our previous studies on the dynamics of a single gas bubble rising in a viscous liquid (see [A. Smolianski, H. Haario, P. Luukka, Computational Study of Bubble Dynamics, Research Report 86, Lappeenranta University of Technology, Finland]), and we use the same, finite-element/level-set/operator-splitting method that was proposed in [A. Smolianski, Numerical Modeling of Two-Fluid Interfacial Flows, Ph.D. Thesis. University of Jyveaskylae, 2001]. The numerical method allows to simulate a wide range of flow regimes, accurately capturing the shape of the deforming interface of the bubble and the surface tension effect, while maintaining a good mass conservation. Due to the highly unstable and small-scale nature of the considered problems there are very few experimental investigations, but the comparison with available experimental data confirms a good accuracy of our numerical predictions. Our studies show that plausible results can be obtained with two-dimensional numerical simulations, when a single buoyant bubble or a coalescence of two bubbles is considered.
机译:在这项工作中,我们提出了关于摆动气泡状态下尾流不稳定性以及两个不同形状状态下的气泡合并的计算结果。这是我们先前对粘性液体中单个气泡上升的动力学研究的延续(请参阅[A. Smolianski,H。Haario,P。Luukka,《气泡动力学的计算研究》,拉彭兰塔理工大学的研究报告86 ,芬兰]),并且我们使用与[A.]中提出的相同的有限元/水平集/运算符拆分方法。 Smolianski,两流体界面流动的数值建模,博士学位。论文。于韦斯屈莱大学,2001]。数值方法可以模拟广泛的流动状态,精确地捕捉气泡变形界面的形状和表面张力效应,同时保持良好的质量守恒。由于所考虑问题的高度不稳定和小规模性质,因此很少进行实验研究,但与可用实验数据的比较证实了我们数值预测的良好准确性。我们的研究表明,当考虑单个浮力气泡或两个气泡的合并时,可以通过二维数值模拟获得合理的结果。

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