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首页> 外文期刊>International Journal of Multiphase Flow >Axisymmetric simulation of the interaction of a rising bubble with a rigid surface in viscous flow
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Axisymmetric simulation of the interaction of a rising bubble with a rigid surface in viscous flow

机译:粘性流动中上升气泡与刚性表面相互作用的轴对称模拟

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The interaction between a rising deformable gas bubble and a solid wall in viscous liquids is investigated by direct numerical simulation via an arbitrary-Lagrangian-Eulerian (ALE) approach. The flow field is assumed to be axisymmetric. The bubble is driven by gravity only and the motion of the gas inside the bubble is neglected. Deformation of the bubble is tracked by a moving triangular mesh and the liquid motion is obtained by solving the Navier-Stokes equations in a finite element framework. To understand the mechanisms of bubble deformation as it interacts with the wall, the interaction process is studied as a function of two dimensionless parameters, namely, the Morton number (Mo) and Bond number (Bo). We study the range of Bo and Mo from (2, 6.5×10~(-6)) to (16, 0.1). The film drainage process is also considered in this study. It is shown that the deformation of a bubble interacting with a solid wall can be classified into three modes depending on the values of Mo and Bo.
机译:通过任意拉格朗日-欧拉(ALE)方法的直接数值模拟研究了上升的可变形气泡与粘性液体中的固体壁之间的相互作用。假定流场是轴对称的。气泡仅由重力驱动,气泡内部气体的运动被忽略。气泡的变形通过移动的三角形网格进行跟踪,并且通过在有限元框架中求解Navier-Stokes方程来获得液体运动。为了了解气泡变形与壁相互作用的机理,我们将相互作用过程作为两个无量纲参数的函数进行研究,这两个参数分别是莫顿数(Mo)和键数(Bo)。我们研究了Bo和Mo的范围从(2,6.5×10〜(-6))到(16,0.1)。在这项研究中还考虑了膜的排水过程。结果表明,气泡与固体壁相互作用的变形可以根据Mo和Bo的值分为三种模式。

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