Department of Applied Physics, Eindhoven University of Technology, De Rondom 70, 5612 AP, Eindhoven, the Netherlands.
Helmholtz Institute Erlangen-Nürnberg for Renewable Energy, Forschungszentrum Jülich, Fürther Strasse 248, Nürnberg, Germany.
Phys Rev E. 2019 Sep;100(3-1):033309. doi: 10.1103/PhysRevE.100.033309.
Soft particles at fluid interfaces play an important role in many aspects of our daily life, such as the food industry, paints and coatings, and medical applications. Analytical methods are not capable of describing the emergent effects of the complex dynamics of suspensions of many soft particles, whereas experiments typically either only capture bulk properties or require invasive methods. Computational methods are therefore a great tool to complement experimental work. However, an efficient and versatile numerical method is needed to model dense suspensions of many soft particles. In this article we propose a method to simulate soft particles in a multicomponent fluid, both at and near fluid-fluid interfaces, based on the lattice Boltzmann method, and characterize the error stemming from the fluid-structure coupling for the particle equilibrium shape when adsorbed onto a fluid-fluid interface. Furthermore, we characterize the influence of the preferential contact angle of the particle surface and the particle softness on the vertical displacement of the center of mass relative to the fluid interface. Finally, we demonstrate the capability of our model by simulating a soft capsule adsorbing onto a fluid-fluid interface with a shear flow parallel to the interface, and the covering of a droplet suspended in another fluid by soft particles with different wettability.
软粒子在流体界面上起着重要的作用,在我们日常生活的许多方面,如食品工业,油漆和涂料,和医疗应用。分析方法不能描述的复杂动力学的悬浮液的许多软粒子的新兴影响,而实验通常只捕获块属性或需要侵入性的方法。因此,计算方法是一个很好的工具来补充实验工作。然而,需要一种有效的和通用的数值方法来模拟多相软粒子悬浮液。在本文中,我们提出了一种基于格子玻尔兹曼方法模拟软粒子在多组分流体,在和接近流体-流体界面,并描述了从流体-结构耦合的误差粒子平衡形状吸附到流体-流体界面时。此外,我们描述了粒子表面的优先接触角和粒子柔软度对相对于流体界面的质心垂直位移的影响。最后,我们通过模拟软胶囊吸附在一个与界面平行的剪切流上的流体-流体界面,以及一个由不同润湿性的软粒子覆盖的悬浮液中的液滴,展示了我们模型的能力。