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Bubble formation and scale dependence in free-surface air entrainment

机译:自由表面空气夹带中的气泡形成和尺度依赖性

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摘要

The air bubble entrainment and self–aeration phenomena in free-surface water flows reveal a rich interplay of fundamental science and engineering, and the size distribution of the entrained bubbles enhances the air–water gas flux, improves the gas transfer, and influences the cavitation erosion protection in high–speed flows. In the present study, we investigate the bubble–formation mechanism of free–surface air entrainment and the related microscopic bubble scale in the laboratory. This paper provides a quantitative description of bubble entrainment. The entrapment deformation of the local free surface over a period follows a power–law scaling and entrains a bubble when the entrapped surface becomes enclosed in the unstable movement period. Both the size scale and shape character of the entrapped free surface determine the size and skewness of the distribution of the air bubble. The entrapment deformation process confirms that the instability behaviour of the local air–water interface results in the onset of bubble entrainment. Further research is necessary to elucidate the instability criterion dominated by the interface instability and promote a new understanding of multiphase flow generation and development.
机译:自由表面水流中的气泡夹带和自曝气现象显示了基础科学和工程学之间的丰富相互作用,夹带气泡的尺寸分布增强了空气-水的气体通量,改善了气体的传递,并影响了空化高速流动中的腐蚀保护。在本研究中,我们在实验室中研究了自由表面夹带空气的气泡形成机理和相关的微观气泡规模。本文提供了气泡夹带的定量描述。局部自由表面在一段时间内的包裹变形遵循幂律定标,并且当包裹的表面在不稳定的运动周期内被包裹时,夹带气泡。截留的自由表面的尺寸和形状特征都决定了气泡分布的尺寸和偏度。夹带变形过程证实,局部空气-水界面的不稳定性行为导致气泡夹带的开始。有必要进行进一步的研究以阐明以界面不稳定性为主导的不稳定性准则,并促进对多相流产生和发展的新认识。

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