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Model and experimental visualizations of the interaction of a bubble with an inclined wall

机译:气泡与倾斜壁相互作用的模型和实验可视化

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In this paper we derive a model based on lubrication theory to describe the interaction of a bubble with an inclined wall. The model is an extension of the model derived by Klaseboer, Chevaitier, Mate, Masbernat, Gourdon [2001. Model and experiments of a drop impinging on an immersed wall. Physics of Fluids 13(1), 45-57.] and Moraga, Drew, Larreteguy, Lahey [2005. Modeling wall-induced forces on bubbles for inclined walls. Multiphase Science and Technology 17(4), 483-505.] in the case of a horizontal wall. We consider bubbles of diameter 1-2 mm, which corresponds to high Reynolds numbers Re similar to O (1 0 0), and moderate deformation effects (with a Weber number of 0 (1)). Predictions of the model are compared with experimental visualizations of air bubbles rising in water toward an inclined wall. The dynamical behavior of bubbles is observed to depend on the wall inclination. We find that the model reproduces the bubble trajectories for wall inclinations smaller than 55 degrees-60 degrees. This critical value for the wall inclination corresponds to an experimentally observed transition in the bubble bouncing behavior, which agrees with the observations of Tsao and Koch [1997. Observations of high. Reynolds number bubbles interacting with a rigid wall. Physics of Fluids 468, 271.]. We show that the main features of our lubrication-based model for rebound with an inclined wall can be expressed with a simple force model proposed by Moraga et al., suitable for use in direct numerical simulations of multiphase flow. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在本文中,我们基于润滑理论导出了一个模型,用于描述气泡与倾斜壁的相互作用。该模型是Klaseboer,Chevaitier,Mate,Masbernat,Gourdon [2001。水滴撞击到沉浸的墙壁上的模型和实验。流体物理学13(1),45-57。]和Moraga,Drew,Larreteguy,Lahey [2005。为倾斜壁的气泡模拟壁诱导力。如果是水平墙,则是Multiphase Science and Technology 17(4),483-505。]。我们考虑了直径为1-2毫米的气泡,这对应于类似于O(1 0 0)的高雷诺数Re和适度的变形效应(韦伯数为0(1))。该模型的预测与水中气泡朝倾斜壁上升的实验可视化进行了比较。观察到气泡的动力学行为取决于壁的倾斜度。我们发现该模型再现了壁倾角小于55度至60度的气泡轨迹。该壁倾角的临界值对应于气泡弹跳行为的实验观察到的转变,这与Tsao和Koch [1997。观察度高。雷诺数气泡与刚性壁相互作用。流体物理学468,271.]。我们表明,基于润滑的倾斜壁回弹模型的主要特征可以用Moraga等人提出的简单力模型来表示,该模型适用于多相流的直接数值模拟。 (C)2007 Elsevier Ltd.保留所有权利。

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