Cui Jie, Zhou Tao-Ran, Huang Xiao, Li Zi-Chao
School of Naval Architecture and Ocean Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China.
Shipbuilding Technology Research Institute, Shanghai 200032, China.
Ultrason Sonochem. 2021 Jul;75:105587. doi: 10.1016/j.ultsonch.2021.105587. Epub 2021 May 8.
The bubbles have been widely used in biomedical field, military and chemical industry. The liquid jet generated by the bubble collapse through an orifice is utilized in needle-free injections and inkjet printing. In this paper we devised synchronized triggering equipment, experimentally investigated the mechanism in the interaction of an electric-spark generated a single bubble and a vertical wall with an air-back opening. Detailed observations were recorded and described for bubble oscillation, migration, jetting, as well as the high-speed water spike penetrating through the opening. The results revealed that there was a critical value of the bubble-wall distance, below which the bubble was directed away from the incomplete boundary, while the bubble may tear from the middle for larger distance. As the distance varied, we studied the volume of the water that rushed through the opening, the velocity at the tip of the water spike, and the center of the bubble as well as the migration of the bubble boundary. This work reveals that the high-speed water spike caused by the bubble may be a potential threat to the structures, specifically for cases with a small opening size and short bubble-boundary distance.
气泡已在生物医学领域、军事和化学工业中得到广泛应用。通过孔口的气泡坍塌产生的液体射流被用于无针注射和喷墨打印。在本文中,我们设计了同步触发设备,通过实验研究了电火花产生单个气泡与带有空气回流开口的垂直壁相互作用的机制。记录并描述了气泡振荡、迁移、喷射以及高速水尖穿透开口的详细观测结果。结果表明,气泡与壁面的距离存在一个临界值,低于该临界值时,气泡会被引导远离不完整边界,而当距离较大时,气泡可能会从中间撕裂。随着距离的变化,我们研究了通过开口的水的体积、水尖尖端的速度、气泡的中心以及气泡边界的迁移。这项工作表明,由气泡引起的高速水尖可能对结构构成潜在威胁,特别是对于开口尺寸小且气泡边界距离短的情况。