Author:
Rao Xiajin,Li Dajian,Zhang Xiaoxing,Xia Xiaofei,Su Yi,Lu Yufeng,Peng Boya
Abstract
AbstractThe greenhouse effect of SF6 increasingly limits its application in various gas insulated equipment. C6F12O combines the advantages of insulation resistance, safety and environmental protection. When mixed with buffer gas, C6F12O is considered to have potential application prospects in medium and low voltage equipment. In this paper, about the partial discharge characteristics of the mixed gas, an experimental study was carried out. The partial discharge initiation voltage and discharge extinction voltage of mixed gas under power frequency voltage are measured and compared with the breakdown voltage. The results show that the breakdown voltage is greatly improved after adding C6F12O, with the increase of mixing ratio, the partial discharge initiation voltage and extinction voltage of mixed gas gradually increase, and the effect of gas pressure on high mixing ratio is obvious. The difference between the partial discharge inception voltage and the breakdown voltage is larger than that of pure N2. The research in this paper can provide an important reference for the application, operation and protection of C6F12O mixed gas in medium and low voltage equipment.
Publisher
Springer Science and Business Media LLC
Reference12 articles.
1. Zhang, X. et al. Recent advances in decomposition of the most potent greenhouse gas SF6. Crit. Rev. Environ. Sci. Technol. 47(18), 1763–1782 (2017).
2. Silvant, S. et al. Detailed analysis of live tanks and GIS circuit breakers using a new environmental friendly gas. In CIGRE 2016, A3–A114 (CIGRE, 2016).
3. Li, Y. et al. Acute inhalation toxicity studies of gas insulating medium C4F7N. High Volt. Eng. 45(01), 109–116 (2019).
4. Kieffel, Y. et al. Green gas to replace SF6 in electrical grids. IEEE Power Energy Mag. 14(2), 32–39 (2016).
5. Mantilla, J. D. et al. Investigation of the insulation performance of a new gas mixture with extremely low GWP. In Proc. 2014 Electrical Insulation Conference, 469–473 (IEEE, 2014).
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献