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乳液中的稳定排水:表面 Plateau 边界的校正及高水体积分数模型

Steady drainage in emulsions: corrections for surface Plateau borders and a model for high aqueous volume fraction.

作者信息

Péron N, Cox S J, Hutzler S, Weaire D

机构信息

School of Physics, Trinity College Dublin, Ireland.

出版信息

Eur Phys J E Soft Matter. 2007 Apr;22(4):341-51. doi: 10.1140/epje/e2007-00043-8. Epub 2007 May 26.

Abstract

We compare extensive experimental results for the gravity-driven steady drainage of oil-in-water emulsions with two theoretical predictions, both based on the assumption of Poiseuille flow. The first is from standard foam drainage theory, applicable at low aqueous volume fractions, for which a correction is derived to account for the effects of the confinement of the emulsion. The second arises from considering the permeability of a model porous medium consisting of solid sphere packings, applicable at higher aqueous volume fractions. We find quantitative agreement between experiment and the foam drainage theory at low aqueous volume fractions. At higher aqueous volume fractions, the reduced flow rate calculated from the permeability theory approaches the master curve of the experimental data. Our experimental data demonstrates the analogy between the problem of electrical flow and liquid flow through foams and emulsions.

摘要

我们将水包油乳液重力驱动稳定排水的大量实验结果与两种理论预测进行了比较,这两种预测均基于泊肃叶流动的假设。第一种来自标准泡沫排水理论,适用于低水体积分数情况,为此推导了一个修正项以考虑乳液受限的影响。第二种来自考虑由固体球体填充物组成的模型多孔介质的渗透率,适用于较高水体积分数情况。我们发现在低水体积分数下实验与泡沫排水理论之间存在定量一致性。在较高水体积分数下,根据渗透率理论计算出的降低的流速接近实验数据的主曲线。我们的实验数据证明了电流问题与液体通过泡沫和乳液流动问题之间的相似性。

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