论文标题
对冲动产生的重点喷气机的粘性影响
Viscous influences on impulsively generated focused jets
论文作者
论文摘要
冲动产生的聚焦喷头在各种应用中起着重要作用,包括喷墨印刷,无针药物输送和微流体设备。随着从培养基到高粘性液体产生喷气机和液滴的需求增加,了解粘度在喷射动力学中的作用变得至关重要。尽管以前的研究检查了对墙壁的粘性影响,但对自由表面的影响尚未得到充分了解。这项研究的目的是通过将实验与数值模拟整合在一起,以研究对聚焦射流形成的粘性影响。我们证明,质量和动量沿自由表面的切向方向转移有助于聚焦的射流形成,并且粘度在此转移过程中起关键作用。粘度引起的剪切流和自由表面附近的涡度的扩散会降低射流速度。基于实验观察结果和仿真结果,我们提出了一个方程来预测粘性射流速度。这些发现为高级制造和生物医学应用中的粘性界面动力学提供了新的观点。
Impulsively generated focused jets play a significant role in various applications, including inkjet printing, needle-free drug delivery, and microfluidic devices. As the demand for generating jets and droplets from medium to highly viscous liquids increases, understanding the role of viscosity in jetting dynamics becomes crucial. While previous studies have examined the viscous effects on walls, the impact on free surfaces has not been thoroughly understood. This study aims to bridge this gap by integrating experiments with numerical simulations to investigate the viscous effects on focused jet formation. We demonstrate that mass and momentum transfer along the tangential direction of the free surface contribute to focused jet formation, and viscosity plays a key role in this transfer process. The viscosity-induced diffusion of the shear flow and vorticity near the free surface reduces the jet speed. Based on experimental observations and simulation results, we propose an equation to predict the viscous jet velocity. These findings offer new perspectives on viscous interface dynamics in advanced manufacturing and biomedical applications.