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Simulation of bubble-bubble interaction using a lattice Boltzmann method

机译:气泡-气泡相互作用的格子Boltzmann方法模拟

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This paper presents the results obtained from three-dimensional numerical simulations of multiple bubbles rising under buoyancy in a quiescent viscous incompressible fluid. A lattice Boltzmann method, based on the free-energy model, is developed to simulate the behavior of bubble-bubble interaction while rising in the fluid. A new scheme, which involves eighteen lattice points for the first and second derivative, is proposed to achieve stable computations at high fluid-to-bubble density ratio. The effects of the density ratio and the initial bubble configuration on the flow field induced by rising bubbles and on the evolution of bubble shape during their coalescence are investigated. It is found that for two rising bubbles with the same size, the leading bubble rises like an isolated bubble before coalescence. The trailing bubble is entrained by the leading one, and experiences obvious deformation when it enters the wake region of the leading bubble. The shape evolution of the trailing bubble is different at the high and low density ratios. However, for two rising bubbles with different sizes, the larger bubble always has strong effect on the smaller one in any initial configuration.
机译:本文介绍了在静态粘性不可压缩流体中在浮力作用下上升的多个气泡的三维数值模拟获得的结果。建立了基于自由能模型的格子玻尔兹曼方法,以模拟流体中上升时气泡-气泡相互作用的行为。提出了一种新的方案,该方案涉及一阶和二阶导数的十八个晶格点,以在高流体气泡密度比下实现稳定的计算。研究了密度比和初始气泡形状对上升气泡引起的流场以及气泡聚结过程中气泡形状演变的影响。发现对于两个相同大小的上升气泡,前气泡像聚结之前的孤立气泡一样上升。尾部气泡被前部气泡夹带,并且进入尾部气泡的尾流区域时会发生明显的变形。在高密度比和低密度比下,尾随气泡的形状演变都不同。但是,对于两个大小不同的上升气泡,在任何初始配置下,较大的气泡始终会对较小的气泡产生强烈影响。

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