由电流脉冲引起的非极性液体中蒸汽泡的形成

R. Kattan, A. Denat, N. Bonifaci
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引用次数: 60

摘要

研究了具有点平面电极几何结构的纯化非极性液体的电导率随各参数的变化规律。对于点的负极性,除了缺乏压力依赖性外,已经观察到与空气中发生的TRICHEL脉冲非常相似的脉冲制度。在常压下,气泡的形成与电流脉冲相关。研究了气泡的产生和动力学作为各种参数的函数:注入能量、静水压力(高达12 MPa)和液体性质(环己烷、正戊烷、正癸烷、异辛烷和四甲基硅烷)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of vapor bubbles in nonpolar liquids initiated by current pulses
The electrical conduction of purified nonpolar liquids with point-plane electrode geometry was studied as a function of various parameters. For negative polarity of the point, a pulse regime has been observed which bears a great similarity to the TRICHEL pulses occurring in air, with the exception of a lack of pressure dependence. At atmospheric pressure, bubble formation was correlated with current pulse. The generation and dynamics of the bubble are studied as a function of various parameters: injected energy, hydrostatic pressure (up to 12 MPa), and the nature of the liquid (cyclohexane, n-pentane, n-decane, iso-octane, and tetramethylsilane).<>
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