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Effects of hydrostatic pressure on the prebreakdown phenomena in dielectric liquids

机译:静水压力对介电液体预破裂现象的影响

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It is commonly accepted that a gaseous phase is involved during the prebreakdown phase of dielectric liquid breakdown. This is indicated by the generation of gas bubbles following streamer propagation, whatever the polarity. It has been known for a long time that increasing the pressure vastly improves the breakdown voltage whether DC or AC. KAO and McMATH [1] have shown that in. a quasi-uniform field, the effects of the pressure on the breakdown voltage became negligible for sufficiently short rise times of the voltage ramp. In point-plane geometry, it has been reported that an increase in pressure reduced the prebreakdown light emission [2]. The rise time and the peak value of prebreakdown current in a parallel plate arrangement with a small protrusion on one electrode decreased with increase in pressure [3]. Time lags to prebreakdown disturbances increased with hydrostatic pressure, the pressure dependence decreasing at very high voltages [4]. The purpose of this paper is to study in the point-plane geometry with rectangular voltage pulses, the influence of the pressure both on the initiation and the propagation phases, by recording the streamer velocity, the transient currents and light emission.
机译:通常认为在介电液体击穿的预击穿阶段涉及气相。无论极性如何,在拖缆传播之后都会产生气泡,这表明了这一点。长期以来,众所周知,无论是直流还是交流,增加压力都可以极大地改善击穿电压。 KAO和McMATH [1]表明,在准均匀场中,对于电压斜坡的足够短的上升时间,压力对击穿电压的影响可以忽略不计。在点平面几何中,据报道,压力的增加减少了预击穿光的发射[2]。在一个电极上有小突起的平行板结构中,上升时间和预击穿电流的峰值随压力的增加而减小[3]。静水压随着预破裂扰动的增加而滞后,在非常高的电压下压力依赖性降低[4]。本文的目的是在矩形电压脉冲的点平面几何结构中,通过记录拖缆速度,瞬态电流和光发射来研究压力对初始相位和传播相位的影响。

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