高压脉冲下的液态水:极性对瞬态预击穿过程的影响

M. Hogg, I. Timoshkin, M. Given, M. Wilson, S. Macgregor, R. Fouracre, J. Lehr
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引用次数: 4

摘要

液态水脉冲击穿的复杂性反映在预击穿过程对所施加脉冲的极性、上升时间和波形以及水本身的导电性等物理性质的依赖上。因此,需要进一步了解水和水溶液中脉冲放电的形成和传播机制,以实现脉冲功率和等离子体技术的发展。本文研究了在点-面电极拓扑结构中高压脉冲下水的介电行为。研究了不同电导率的水,包括蒸馏水、自来水和水基离子溶液。讨论了水的电压时间击穿特性,得到了正负极性脉冲的预击穿时间和标称击穿速度。讨论了高压脉冲应力下液态水瞬态预击穿过程中所观察到的极性效应的潜在击穿机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid water stressed with HV impulses: Effect of polarity on transient pre-breakdown processes
The complexity of the impulse breakdown of liquid water is reflected by the dependency of pre-breakdown processes on the polarity, rise-time and wave-shape of the applied impulses as well as on physical properties, such as electrical conductivity of water itself. Further understanding of the mechanisms of formation and propagation of impulse discharges in water and water solutions is therefore required to enable the development of pulsed power and plasma technologies. The paper presents a study of the dielectric behaviour of water stressed with high voltage impulses in a point-plane electrode topology. Water with different conductivities including distilled water, tap water and a water based ionic solution was investigated. The volt-time breakdown characteristic of water is discussed and the pre-breakdown time and nominal breakdown velocity have been obtained for both positive and negative polarity impulses. Potential breakdown mechanisms which can explain the observed polarity effects in the transient pre-breakdown processes in liquid water stressed with high voltage impulses are discussed.
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