22–28 Jun 2019
DoubleTree at the Entrance to Universal Orlando
America/New_York timezone

3P43 - Temperature effect on the surface flashover plasma of the GIS insulator

26 Jun 2019, 13:30
1h 30m
Universal Center (Double Tree at the Entrance to Universal Orlando)

Universal Center

Double Tree at the Entrance to Universal Orlando

Poster 6.4 Environmental, Industrial, and Display Applications Poster - Industrial/Commercial/Medical Applications and Plasma and Pulse Power Diagnostics

Speaker

Dr Guo-ming MA (North China Electric Power University)

Description

Flashover plasma across an epoxy sulfur hexafluoride interface in gas insulated switchgear (GIS) may induce blockage of power cut. However, characteristics of flashover plasma across an epoxy sulfur hexafluoride interface under the operation temperature of GIS (80 Celsius degree) were less discussed previously. In this work, a high voltage experiment setup was built to investigate the temperature effect on the surface flashover plasma. The voltage, current, acoustic and ultra-high frequency signals were obtained with different kind of sensors. The experiments indicate that the flashover voltage reduced 11.74% when temperature increased from 20 Celsius degree to 80 Celsius degree. The distributions of electric field, temperature and the gas density were also simulated. A particle-in-cell model including field electron emission and temperature was developed to discuss the temperature effect. From the simulation results, it can be concluded that at higher temperature, it has more tendency to develop flashover across an epoxy sulfur hexafluoride interface initiated by field electron emission. This work will give a reference for evaluation and design of epoxy sulfur hexafluoride interface for high-voltage GIS applications.

Authors

Mr Shijie LU (North China Electric Power University) Mr Liangen ZHANG (North China Electric Power University) Mr Hongtao ZHONG (Princeton University) Dr Guo-ming MA (North China Electric Power University) Prof. Cheng-rong LI (North China Electric Power University) Dr Yu YIN (China Electric Power Research Institute) Mr Boyuan CUI (China Electric Power Research Institute) Mrs yuyi WU (China Electric Power Research Institute)

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