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Development of the spark discharge in air with uniform applied field and long gaps

机译:均匀分布的电场和长间隙的空气中火花放电的发展

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摘要

The optical phenomena occurring during the initiation of breakdown in a uniform-field gap in air have been investigated for values of pd extending from 7600 to 20 000 mmHg-cm. The investigations were made using an image convertor and a photomultiplier. Measurements have also been made of the breakdown voltage, probability of breakdown with impulse voltage applied, time lags to breakdown, and current flowing during the breakdown process. The manner of spark development was generally similar throughout the range of pd investigated. The process began with a faint, filamentary discharge, which progressed across the gap; the point of origin and direction of propagation depended on the experimental conditions, and the maximum velocity of propagation was approximately 2.5????????108cm/s. This was followed by a much brighter discharge which originated at the same point in the gap as the first channel, and travelled across the gap with an approximate velocity of 4????????107cm/s. Finally, a very bright third discharge occurred, with a rate of propagation several times higher than that of the second. A theory is put forward to explain the breakdown process.
机译:对于pd值从7600扩展到20 000 mmHg-cm的情况,已经研究了在空气中均匀场隙击穿开始期间发生的光学现象。研究是使用图像转换器和光电倍增管进行的。还对击穿电压,施加脉冲电压时击穿的可能性,击穿的时间滞后以及击穿过程中的电流流动进行了测量。在所研究的整个Pd范围内,火花产生的方式通常相似。该过程以微弱的丝状放电开始,并逐渐穿过间隙。传播的起点和方向取决于实验条件,最大传播速度约为2.5×108cm / s。接着是更亮的放电,该放电始于间隙中与第一通道相同的点,并以约4×107cm / s的速度越过间隙行进。最后,发生了非常明亮的第三次放电,其传播速率是第二次放电的几倍。提出了一种理论来解释故障过程。

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