Multi-scale approach for the rheological characteristics of emulsions using molecular dynamics and lattice Boltzmann method

流变学 乳状液 剪切速率 相对粘度 表面张力 格子Boltzmann方法 肺表面活性物质 粘度 热力学 材料科学 剪切减薄 剪切(地质) 分子动力学 化学 复合材料 有机化学 计算化学 物理
作者
Se Bin Choi,Hong Yoon,Joon Sang Lee
出处
期刊:Biomicrofluidics [American Institute of Physics]
卷期号:8 (5) 被引量:11
标识
DOI:10.1063/1.4892977
摘要

An emulsion system was simulated under simple shear rates to analyze its rheological characteristics using a hierarchical multi-scale approach. The molecular dynamics (MD) simulation was used to describe the interface of droplets in an emulsion. The equations derived from the MD simulation relative to interfacial tension, temperature, and surfactant concentration were applied as input parameters within lattice Boltzmann method (LBM) calculations. In the LBM simulation, we calculated the relative viscosity of an emulsion under a simple shear rate along with changes in temperature, shear rate, and surfactant concentration. The equations from the MD simulation showed that the interfacial tension of the droplets tended to decrease with an increase in temperature and surfactant concentration. The relative viscosity from the LBM simulation decreased with an increase in temperature. The shear thinning phenomena explaining the inverse proportion between shear rate and viscosity were observed. An increase in the surfactant concentration caused an increase in the relative viscosity for a decane-in-water emulsion, because the increased deformation caused by the decreased interfacial tension significantly influenced the wall shear stress.

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