Simulational study on streamer discharge in transformer oil under positive nanosecond pulse voltage

Author:

Li Yuan ,Mu Hai-Bao ,Deng Jun-Bo ,Zhang Guan-Jun ,Wang Shu-Hong ,

Abstract

In this paper, we investigate the streamer discharge process in transformer oil under positive nanosecond pulse voltage through developing a two-dimensional axially symmetric fluid model and simulating the physics of discharge inception and propagation. The streamer discharge profile and distributions of electric field and space charge density are obtained under different conditions such as the amplitude of applied voltage, rise time and gap distance. Simulation results show that space charges enhance the front field of streamer head, which is conducive to the longer propagation of discharge channel, therefore "ionization wave" is formed. The magnitude and rise time of applied voltage have evident influences on the average speed of streamer propagation. It can be observed that the higher the applied impulse voltage, the faster the streamer propagates, and the steeper the rise time of applied impulse, when streamer arrives at the same position, the larger the discharging radius will be and the smaller maximal electric field will be. The cases of different gap distances indicate that longer gap distance corresponds to a faster average speed of streamer. It is considered that field-dependent molecular ionization predominates the charge generation mechanism of streamer discharge process in transformer oil, and space charge effect contributes to further developing ionization until the whole gap eventually breakdowns. The study is dedicated to the better understanding of the process from inception to breakdown of discharging in transformer oil, as well as ionization mechanism in liquid dielectric.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference33 articles.

1. Wang Y 1991 High Power Pulsed Power Supply (Beijing: Atomic Energy Press) pp5-11 (in Chinese) [王莹 1991 高功率脉冲电源(北京: 原子能出版社)第5–11页]

2. Zhou Y X, Sha Y C, Nie D X, Wu Z R, Deng J G, Lu L C 2012 High Voltage Engineering 38 1163 (in Chinese) [周远翔, 沙彦超, 聂德鑫, 伍志荣, 邓建刚, 卢理成 2012 高电压技术 38 1163]

3. Wang W R, He D H 1985 High Voltage Engineering 4 24 (in Chinese) [王文瑞, 何大海 1985 高电压技术 4 24]

4. Wang Y, Shao T, Yan P, Huang W L, Zhang S C, Sun G S 2005 High Voltage Apparatus 41 1 (in Chinese) [王钰, 邵涛, 严萍, 黄文力, 张适昌, 孙广生 2005 高压电器 41 1]

5. Lehr J M, Agee F J, Copeland R, Prather W D 1998 IEEE Trans. Dielectr. Insul. 5 857

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