气泡
水下
润湿
机械
理论(学习稳定性)
工作(物理)
接触角
固体表面
材料科学
职位(财务)
曲面(拓扑)
适应性
稳定性判据
直线(几何图形)
自由面
计算机科学
经典力学
物理
机械工程
控制理论(社会学)
几何造型
稳定性条件
作者
Yaolei Xiang,Shenglin Huang,Xu Zhou,Pengyu Lv,Gang Wang,Tian‐Yun Huang,Hongyuan Li,Yahui Xue,Huiling Duan
标识
DOI:10.1017/jfm.2025.10760
摘要
The stability of underwater bubbles is important to many natural phenomena and industrial applications. Since stability analyses are complex and influenced by numerous factors, they are often performed on a case-specific basis, with most being qualitative. In this work, we propose a unified and quantitative criterion for evaluating bubble stability by analysing its free energy. This criterion is broadly applicable across various bubble sizes (from nanometres to macroscale) and contact conditions (suspended, attached and trapped bubbles) on surfaces with diverse chemical (hydrophilic and hydrophobic) and morphological (flat and structured solid surfaces) features. This criterion not only applies to the classical stable bubble mode, which depends on contact line pinning at the tips of surface structures, but also predicts a new mode where the synergy between the geometry and wettability of the sidewalls maintains the bubble’s stable state. The contact line can spontaneously adjust its position on the solid surface to maintain pressure balance, which enhances bubble adaptability to environmental changes. A geometric standard for solid surfaces supporting this new stable state is raised, following which we realise the optimisation of solid surface geometries to control the stability of gas bubbles. This work not only provides a universal framework for understanding underwater bubble stability, but also opens avenues for applications.
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