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Particles at fluid-fluid interfaces: A new Navier-Stokes-Cahn-Hilliard surface-phase-field-crystal model

机译:在流体 - 流体界面的颗粒:一种新的Navier-stokes-的Cahn-Hilliard的表面相场晶模型

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摘要

Colloid particles that are partially wetted by two immiscible fluids can become confined to fluid-fluid interfaces. At sufficiently high volume fractions, the colloids may jam and the interface may crystallize. The fluids together with the interfacial colloids form an emulsion with interesting material properties and offer an important route to new soft materials. A promising approach to simulate these emulsions was presented in Aland et al. [Phys. Fluids >23, 062103 (2011)], where a Navier-Stokes-Cahn-Hilliard model for the macroscopic two-phase fluid system was combined with a surface phase-field-crystal model for the microscopic colloidal particles along the interface. Unfortunately this model leads to spurious velocities which require very fine spatial and temporal resolutions to accurately and stably simulate. In this paper we develop an improved Navier-Stokes-Cahn-Hilliard-surface phase-field-crystal model based on the principles of mass conservation and thermodynamic consistency. To validate our approach, we derive a sharp interface model and show agreement with the improved diffuse interface model. Using simple flow configurations, we show that the new model has much better properties and does not lead to spurious velocities. Finally, we demonstrate the solid-like behavior of the crystallized interface by simulating the fall of a solid ball through a colloid-laden multiphase fluid.
机译:被两种不混溶的流体部分润湿的胶体颗粒可能会局限于流体-流体界面。在足够高的体积分数下,胶体可能会堵塞并且界面可能会结晶。流体与界面胶体一起形成具有令人感兴趣的材料特性的乳液,并提供了通往新的柔软材料的重要途径。 Aland等人提出了一种有前途的模拟这些乳液的方法。 [物理流体> 23 ,062103(2011)],其中将用于宏观两相流体系统的Navier-Stokes-Cahn-Hilliard模型与用于微观胶体颗粒的表面相场-晶体模型相结合沿界面。不幸的是,该模型导致杂散速度,这需要非常精细的空间和时间分辨率才能准确稳定地进行模拟。在本文中,我们基于质量守恒和热力学一致性的原理,开发了一种改进的Navier-Stokes-Cahn-Hilliard表面相场晶体模型。为了验证我们的方法,我们导出了一个清晰的界面模型,并与改进的扩散界面模型显示出一致性。使用简单的流量配置,我们证明了新模型具有更好的属性,并且不会导致杂散速度。最后,我们通过模拟固体球通过充满胶体的多相流体的下落来证明结晶界面的固体状行为。

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