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A pair of bubbles' rising dynamics in a xanthan gum solution: a CFD study

机译:黄原胶溶液中一对气泡上升的动力学:CFD研究

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The motion and interaction of a bubble pair in a non-Newtonian fluid (xanthan gum solution) were numerically simulated using a volume of fluid (VOF) method, in which the continuous surface tension model and the power-law model were adopted to represent the surface tension and rheological properties of non-Newtonian fluids, respectively. The effects of the initial horizontal bubble interval, oblique alignment and rheological properties of non-Newtonian fluids on a pair of bubbles rising side-by-side are evaluated in this study. The results indicate that for the case with a non-dimensional initial horizontal bubble interval h* = 4.0, the interaction between the bubbles shows a minimal repulsive effect. Moreover, for the oblique angle alignment a greater repulsive force between the bubbles was seen when the angle was reduced. However, oblique coalescence occurred due to the higher attraction between the bubbles at higher angles, which is independent of the flow index. It is also found that the repulsion effect as well as the variation of the bubble shape from spherical to irregular are more significant at a lower flow index (n < 0.5) due to the shear-thinning effect as well as the differences in their flow field structures.
机译:使用体积流体(VOF)方法对非牛顿流体(黄原胶溶液)中气泡对的运动和相互作用进行了数值模拟,其中采用连续表面张力模型和幂律模型来表示非牛顿流体的表面张力和流变特性。在这项研究中,评估了初始水平气泡间隔,非牛顿流体的斜线排列和流变特性对一对并排上升的气泡的影响。结果表明,对于无维初始水平气泡间隔h * = 4.0的情况,气泡之间的相互作用显示出最小的排斥效果。此外,对于倾斜角度对准,当角度减小时,可以看到气泡之间的排斥力更大。但是,由于气泡之间在较高角度下具有较高的吸引力而发生了倾斜的聚结,这与流动指数无关。还发现,由于剪切稀化作用及其流场的差异,在较低的流动指数(n <0.5)下,排斥作用以及气泡形状从球形到不规则形的变化更为明显。结构。

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