论文标题

用滑水接口建模液滴

Modeling Droplets with Slippery Interfaces

论文作者

Falavarjani, Afsoun Rahnama, Salac, David

论文摘要

许多多相流体系统,例如涉及不混溶的聚合物或带有表面活性剂的液体液体系统的流体系统,在材料界面处显示出无滑动条件的分解。这导致系统内部和外流体的切向速度可能会有所不同,而速度的跳跃不仅取决于界面的材料特性,还取决于周围流体所施加的应力。在这项工作中,提出了一个数值模型,该模型能够研究涉及两维和三维界面滑移的一般多相流体系统。为了使系统在计算上可行,使用了混合的Navier-Stokes投影方法,从而假定粘度,密度和压力在界面上是连续的,而速度场可以经历跳跃,这是通过沉浸式界面方法处理的。将数值模型与涉及聚合物聚合物混合物的实验结果和伸展流中的液滴的计算结果进行了比较,这与两者都非常一致。然后,它用于探索许多常见的多相流体系统中界面滑移的影响,包括平面界面的剪切,液滴和细丝松弛,以及剪切流中的液滴,无论是无绑定和壁绑住的。

Many multiphase fluid systems, such as those involving immiscible polymers or liquid-liquid systems with surfactants, have shown a breakdown of the no-slip condition at the material interface. This results in systems where the tangential velocity of the inner and outer fluid can differ, with the jump in velocity dependent not only the material properties of the interface but also the stresses applied by the surrounding fluid. In this work a numerical model is presented which is capable of investigating general multiphase fluid systems involving interfacial slip in both two- and three-dimensions. To make the system computationally feasible, a hybrid Navier-Stokes projection method is used, whereby the viscosity, density, and pressure are assumed to be continuous across the interface while the velocity field can experience a jump, which is handled via the Immersed Interface Method. The numerical model is compared to experimental results involving polymer-polymer mixtures and computational results for droplets in extensional flows, showing excellent agreement with both. It is then used to explore the influence of interfacial slip in a number of common multiphase fluid systems, including the shearing of a planar interface, droplet and filament relaxation, and droplets in shear flow, both unbounded and wall-bound.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源