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Numerical simulations of capillary spreading of a particle-laden droplet on a solid surface

机译:固体表面上载有颗粒的液滴的毛细管扩散的数值模拟

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We present a direct numerical simulation technique and some results for the capillary spreading of a particulate droplet on a solid surface which is of great importance in the industrial inkjet printing technology as an alternative to the conventional lithography process for precise particle delivery. Since the spreading of particulate droplets is quite complicated in nature, the present work focuses on 2D capillary spreading behavior with full consideration of hydrodynamic interactions as a preliminary study for the particle effect on spreading. To understand the micro-structural phenomena underlying the process, we present a finite-element based computational scheme by combining the level-set method for an accurate interface description with the interfacial tension and the equilibrium contact angle, and the fictitious-domain method for suspended particles with implicit treatment of the hydrodynamic interactions. We investigated droplet spreading by capillary force in a Newtonian fluid and discussed effects of the presence of particles on the spreading behavior along with the particle movement. The amount of spread of a particulate droplet appears smaller than that of a homogeneous fluid droplet during the spread process and this reduced rate of spreading has been interpreted the results in conjunction with the distribution of the shear rate, the angular velocity of particles, and the kinetic energy.
机译:我们提出了直接的数值模拟技术和一些结果,用于将微粒液滴毛细管散布在固体表面上,这在工业喷墨印刷技术中具有重要意义,可作为传统光刻工艺的替代品,以实现精确的颗粒输送。由于颗粒液滴的散布在本质上是相当复杂的,因此本工作着重研究二维毛细管散布行为,并充分考虑了流体动力学相互作用,以此作为散布对粒子影响的初步研究。为了理解该过程的微观结构现象,我们结合了用于界面精确描述的水平集方法,界面张力和平衡接触角以及用于悬架的虚拟域方法,提出了一种基于有限元的计算方案。对流体动力相互作用进行隐式处理的颗粒。我们研究了在牛顿流体中毛细作用力引起的液滴散布,并讨论了粒子的存在对散布行为以及粒子运动的影响。在散布过程中,微粒液滴的散布量似乎小于均质液滴的散布量,这种散布速率的降低已被解释为与剪切速率,颗粒的角速度和颗粒的分布有关的结果。动能。

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