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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Switching impulse breakdown characteristics of large sphere-plane air gaps compared with rod-plane air gap
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Switching impulse breakdown characteristics of large sphere-plane air gaps compared with rod-plane air gap

机译:与杆平面气隙相比,切换大球面空气间隙的脉冲击穿特性

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摘要

With the increase of operation voltage to 800 kV-1100 kV, the sphere-plane gaps with radius of 0.5-1 meter are widely used in the converter station of UHVDC power transmission system. In order to ensure the safety of UHVDC system and reduce the investment, it is necessary to investigate the breakdown characteristic of large radius sphere-plane gap. This paper implemented experiments on three different gap configurations: rod-plane, sphere (R=0.55 m)-plane, and sphere (R=0.75 m)-plane. The 50% breakdown voltages and the current injected into the high voltage electrode were measured. Besides, the discharge process was observed by a high speed CCD camera. Three types of current waveforms related to different streamer progression characteristics were found. With the increase of sphere radius, it can be found that the streamer gradually becomes dominant in the discharge process, which leads to higher average breakdown field, longer streamer length and much more injected charge of first streamer.
机译:随着运行电压的增加至800 kV-1100 kV,半径为0.5-1米的球面间隙广泛用于UHVDC电力传输系统的转换站。为了确保UHVDC系统的安全性并降低投资,有必要研究大半径球面间隙的击穿特性。本文在三种不同的间隙配置中实施了实验:杆平面,球形(r = 0.55 m)-plane,球(r = 0.75 m)-plane。测量了50%的击穿电压和注入到高电压电极的电流。此外,通过高速CCD相机观察到放电过程。找到了与不同拖缆进展特性相关的三种类型的电流波形。随着球半径的增加,可以发现拖车在放电过程中逐渐占据主导,这导致更高的平均击穿场,较长的飘带长度和更加注入的第一拖缆的喷射电荷。

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