Study on Surface Rainwater and Arc Characteristics of High-Voltage Bushing With Booster Sheds Under Heavy Rainfall

IEEE ACCESS(2020)

引用 5|浏览21
暂无评分
摘要
The flashover performance of insulators can be improved by BS (booster sheds) in the rain, which is mainly attributed to the reasons that BS break up long cascades of water and block connections of arcs. However, surface rainwater characteristics and arc characteristics of bushing have not been quantitatively studied under heavy rainfall. In this article, the artificial rain tests were conducted on a 500 kV transformer high-voltage bushing equipped with and without BS under the rainfall intensity of 10 mm/min. X (the total length of water column) and Larc (the critical length of arc) on the bushing surface were taken as the feature parameters of surface rainwater characteristics and arc characteristics, respectively. The effects of BS on E-h (the rain flashover voltage gradient along the insulation height), X and L-arc were investigated, respectively. Furtherly, the relationships were studied among E-h, X and L-arc. Results indicate that E-h has a sharp rise as the number of BS (N-BS) is from one to two, however the rise of E-h gradually decreases when N-BS exceeds two. X decreases while L-arc increases with the rise of N-BS, however both the change ranges of them continually fall. Furthermore, L-arc presents remarkable negative correlation to X because of the effect of the electric field. E-h rises nonlinearly with the decrease of X, which is due to the change of the wetting uniformity on the bushing surface and the potential redistribution along air gaps in the presence of the local arc.
更多
查看译文
关键词
Rain flashover,booster sheds,bushing,insulation performance
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要