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首页> 外文期刊>Proceedings of the IEE - Part C: Monographs >The initiation mechanism of long sparks in point-plane gaps
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The initiation mechanism of long sparks in point-plane gaps

机译:点平面间隙中长火花的引发机理

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Investigations have been made of the optical and electrical characteristics of the corona discharges and leader strokes preceding the impulse breakdown of positive-pointegative-plane gaps in air at atmospheric pressure. The results show that initially a corona discharge forms in the highly stressed region round the pointed electrode; this corona gives rise to a short-duration (~0.4 microsec.) pulse of light emission in the gap, accompanied by a similar pulse of current in the circuit. The size and shape of the light-emitting volume in this corona discharge have been studied. The next stage in the growth of the spark is the development of the leader stroke from the corona. The leader stroke grows across the gap in a predictable manner, and the current flowing in the circuit during the growth depends on the velocity of the leader stroke. The size and configuration of the light-emitting volume of the leader stroke are similar to those of the corona. The characteristics of the corona and leader stroke in air at reduced pressures and in oxygen, nitrogen and hydrogen are also briefly described.
机译:在大气压下空气中正点/负平面间隙的脉冲击穿之前,已经对电晕放电和前导冲程的光学和电气特性进行了研究。结果表明,最初在尖电极周围的高应力区域中会形成电晕放电;而在电晕放电时,会产生电晕放电。这种电晕会在间隙中产生短时(〜0.4微秒)的发光脉冲,并在电路中产生类似的电流脉冲。已经研究了该电晕放电中的发光体积的大小和形状。火花增长的下一个阶段是电晕产生的领导者冲程。引导冲程以可预测的方式在间隙中增长,并且在增长期间电路中流动的电流取决于引导冲程的速度。引导笔划的发光体积的大小和构造与电晕类似。还简要介绍了在减压下的空气中以及在氧气,氮气和氢气中的电晕和前冲程的特性。

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