气泡
浮力
聚结(物理)
机械
沸腾
成核
工作(物理)
材料科学
热力学
物理
天体生物学
作者
Ryuichi Iwata,Lenan Zhang,Zhengmao Lu,Shuai Gong,Jianyi Du,Evelyn N. Wang
出处
期刊:Langmuir
[American Chemical Society]
日期:2022-03-29
卷期号:38 (14): 4371-4377
被引量:25
标识
DOI:10.1021/acs.langmuir.2c00118
摘要
Bubble evolution plays a fundamental role in boiling and gas-evolving electrochemical systems. One key stage is bubble departure, which is traditionally considered to be buoyancy-driven. However, conventional understanding cannot provide the full physical picture, especially for departure events with small bubble sizes commonly observed in water splitting and high heat flux boiling experiments. Here, we report a new regime of bubble departure owing to the coalescence of two bubbles, where the departure diameter can be much smaller than the conventional buoyancy limit. We show the significant reduction of the bubble base area due to the dynamics of the three-phase contact line during coalescence, which promotes bubble departure. More importantly, combining buoyancy-driven and coalescence-induced bubble departure modes, we demonstrate a unified relationship between the departure diameter and nucleation site density. By elucidating how coalescing bubbles depart from a wall, our work provides design guidelines for energy systems which can largely benefit from efficient bubble departure.
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