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Passage of a bubble through the interface between a shear-thinning heavier liquid and a Newtonian lighter liquid

机译:通过剪切稀疏较重液体和牛顿较轻的液体之间的界面通过液体的通过

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摘要

Numerical simulations are carried out to study the phenomenon of passage of a bubble through the interface between two initially quiescent liquids. The heavier liquid is a viscous shear-thinning liquid whereas the lighter liquid is a viscous Newtonian liquid. The computational model, which is based on axisymmetric computational domain and VOF (volume of fluid) method, is validated by using the data reported in literature. The validated computational model is then used to perform parametric analysis to understand the effects of bubble diameter, interfacial tension between the two liquids and flow index of the heavier liquid on the drainage time, drainage height, retention time and retention height of the bubble at the liquid-liquid interface. Finally, correlations for retention time and retention height are proposed.
机译:进行数值模拟,以研究通过两个最初静态液体之间的界面通过界面的通过的现象。 较重的液体是粘性剪切薄液,而较轻的液体是粘性牛顿液体。 通过使用文献中报告的数据来验证基于轴对称计算域和VOF(流体)方法的计算模型。 然后使用验证的计算模型来执行参数分析以了解气泡直径,两个液体和较重液体的流动指数在排水时间,排水高度,保留时间和泡沫的保留高度之间的界面张力之间的效果 液体液体界面。 最后,提出了保留时间和保持高度的相关性。

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