粘性绝缘液体中电流脉冲对小气泡动力学的影响

F. Jomni, A. Denat
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引用次数: 5

摘要

在低粘度绝缘液体中,微观气泡的动力学得到了广泛的研究。气泡的运动(成长、坍缩、反弹等)受惯性力支配。本文分析了黏性液体(/spl mu//spl ges/ 310 /sup -3/P a.s)中的气泡动力学,得出黏性对其动力学的影响。气泡的内爆时间比在微粘性液体中得到的时间更为重要。实验证明了动态气泡从粘性状态向惯性状态的转变。这种转变取决于气泡的初始大小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viscosity effect on the dynamics of small bubbles generated by electrical current pulse in viscous insulating liquids
The dynamics of microscopic bubbles have been widely studied in low-viscosity insulating liquids. The bubble motion (growth, collapse, rebound, etc) is governed by inertial forces. In this paper, we analyse the bubble dynamics in viscous liquids (/spl mu//spl ges/3 10/sup -3/P a.s) and conclude that the effect of viscosity controls its dynamics. The implosion time of the bubble becomes more important than those obtained in slightly viscous liquids. Experimentally, we demonstrate the transition of dynamics bubble from the viscous regime to the inertial regime. This transition depends on the initial size of the bubble.
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