论文标题
关于液滴Amobreakup中韧带的形成和复发
On the formation and recurrent shedding of ligaments in droplet aerobreakup
论文作者
论文摘要
使用高磁化影影学实验以及完全三维的数值模拟,研究了水滴的破裂,该液滴的破裂是研究了粘性和毛细管效应的。在对实验进行了彻底验证模拟后,我们阐明了韧带形成过程和表面张力的影响。通过流场的傅立叶分解,我们观察到了特定方位角模式的发展,从而破坏了液滴周围的液体板。最终,破裂液体片,导致韧带的形成。我们进一步观察韧带形成和脱落是一个经常性过程。尽管第一韧带脱落很弱取决于韦伯的数量,但随后的脱落过程似乎主要由惯性驱动,并且在变形的液滴后涡流脱落。
The breakup of water droplets when exposed to high-speed gas flows is investigated using both high-magnification shadowgraphy experiments as well as fully three-dimensional numerical simulations, which account for viscous as well as capillary effects. After thorough validation of the simulations with respect to the experiments, we elucidate the ligament formation process and the effect of surface tension. By Fourier decomposition of the flow field, we observe the development of specific azimuthal modes, which destabilize the liquid sheet surrounding the droplet. Eventually, the liquid sheet is ruptured, which leads to the formation of ligaments. We further observe the ligament formation and shedding to be a recurrent process. While the first ligament shedding weakly depends on the Weber number, subsequent shedding processes seem to be driven primarily by inertia and the vortex shedding in the wake of the deformed droplet.