A Numerical Investigation on the Collision Behavior of Unequal-Sized Micro-Nano Droplets

碰撞 机械 蛋白质丝 韦伯数 纳米- 动能 材料科学 纵横比(航空) 分手 临界电离速度 体积热力学 纳米技术 变形(气象学) 物理 复合材料 经典力学 热力学 计算机科学 计算机安全 雷诺数 湍流
作者
Lijuan Qian,Jingqi Liu,Hongchuan Cong,Fang Zhou,Fubing Bao
出处
期刊:Nanomaterials [Multidisciplinary Digital Publishing Institute]
卷期号:10 (9): 1746-1746 被引量:2
标识
DOI:10.3390/nano10091746
摘要

Micro-nano droplet collisions are fundamental phenomena in the applications of nanocoating, nano spray, and microfluidics. Detailed investigations of the process of the droplet collisions under higher Weber are still lacking when compared with previous research studies under a low Weber number below 120. Collision dynamics of unequal-sized micro-nano droplets are simulated by a coupled level-set and volume of fluid (CLSVOF) method with adaptive mesh refinement (AMR). The effects of the size ratio (from 0.25 to 0.75) and different initial collision velocities on the head-on collision process of two unequal-sized droplets at We = 210 are studied. Complex droplets will form the filament structure and break up with satellite droplets under higher Weber. The filament structure is easier to disengage from the complex droplet as the size ratio increases. The surface energy converting from kinetic energy increases with the size ratio, which promotes a better spreading effect. When two droplets keep the constant relative velocity, the motion tendency of the droplets after the collision is mainly dominated by the large droplet. On one hand, compared with binary equal-sized droplet collisions, a hole-like structure can be observed more clearly since the initial velocity of a large droplet decreases in the deformation process of binary unequal-sized droplets. On the other hand, the rim spreads outward as the initial velocity of the larger droplet increases, which leads to its thickening.
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