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Numerical Simulations of the Impact and Spreading of a Particulate Drop on a Solid Substrate

机译:固体基质上颗粒液滴撞击和扩散的数值模拟

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We present two-dimensional numerical simulations of the impact and spreading of a droplet containing a number of small particles on a flat solid surface, just after hitting the solid surface, to understand particle effects on spreading dynamics of a particle-laden droplet for the application to the industrial inkjet printing process. The Navier-Stokes equation is solved by a finite-element-based computational scheme that employs the level-set method for the accurate interface description between the drop fluid and air and a fictitious domain method for suspended particles to account for full hydrodynamic interaction. Focusing on the particle effect on droplet spreading and recoil behaviors, we report that suspended particles suppress the droplet oscillation and deformation, by investigating the drop deformations for various Reynolds numbers. This suppressed oscillatory behavior of the particulate droplet has been interpreted with the enhanced energy dissipation due to the presence of particles.
机译:我们在刚击中固体表面后,在平坦的固体表面上对包含许多小颗粒的液滴的撞击和扩散进行了二维数值模拟,以了解粒子对应用中载有颗粒的液滴扩散动力学的影响应用于工业喷墨印刷工艺。 Navier-Stokes方程是通过基于有限元的计算方案求解的,该方案采用水平集方法对液滴和空气之间的精确界面进行描述,并采用虚拟域方法对悬浮颗粒进行说明,以充分考虑流体动力相互作用。着眼于颗粒对液滴扩散和反冲行为的影响,我们报告了悬浮颗粒通过研究各种雷诺数的液滴变形来抑制液滴的振荡和变形。颗粒液滴的这种抑制的振荡行为已经被解释为由于存在颗粒而具有增强的能量耗散。

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