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Nanoparticles migration near liquid-liquid interfaces using diffuse interface model

机译:使用漫反射界面模型纳米粒子迁移液液界面附近

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摘要

Purpose The purpose of this paper is to develop a numerical model for the simulation of the dynamics of nanoparticles (NPs) at liquid-liquid interfaces. Two cases have been studied, NPs smaller than the interfacial thickness, and NPs greater than the interfacial thickness.Design/methodology/approach The model is based on the molecular dynamics (MD) simulation in addition to phase field (PF) method, through which the discrete model of particles motion is superimposed on the continuum model of fluids which is a new ide a in numerical modeling. The liquid-liquid interface is modeled using the diffuse interface model.Findings For NPs smaller than the interfacial thickness, the results obtained show that the concentration gradient of one fluid in the other gives rise to a hydrodynamic drag force that drives the NPs to agglomerate at the interface. Whereas, for spherical NPs greater than the interfacial thickness, the results show that such NPs oscillate at the interface which agrees with some experimental studies.Practical implications The results are important in the field of numerical modeling, especially that the model is general and can be used to study different systems. This will be of great interest in the field of studying the behavior of NPs inside fluids and near interfaces, which enters in many industrial applications.Originality/value The idea of superimposing the molecular dynamic method on the PF method is a new idea in numerical modeling.
机译:目的本文的目的是开发一种用于模拟液 - 液界面的纳米颗粒(NPS)动态的数值模型。已经研究了两种情况,NPS小于界面厚度,大于界面厚度大的NPS.design/methodology/approach除了相场(PF)方法之外还基于分子动力学(MD)模拟,通过粒子运动的离散模型叠加在数值模型中是一种新的IDE A的流体模型。使用漫反射界面模型建模的液体液界面。对于小于界面厚度的NPS,结果表明,另一个流体的浓度梯度导致驱动NP的流体动力牵引力在界面。而对于大于界面厚度的球形NPS,结果表明,这种NPS在界面上振荡,这与一些实验研究同意。结果在数值模型领域的结果很重要,尤其是模型是一般的,可以是用于研究不同的系统。这将对研究流体内部的NPS行为和接近界面的行为来说非常兴趣,这些领域进入许多工业应用中的界面。叠加在PF方法上叠加分子动态方法的想法是数值模拟中的一个新思路。

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