American Journal of Applied Sciences | |
ELECTRIC FIELD IN POLYMERIC ISOLATORS OF THE 500KV VOLTAGE CLASS | Science Publications | |
Vitor Chaves De Oliveira1  Alexandre De Assis Mota1  Huederson Aparecido Botura Da Silva1  Lia Toledo Moreira Mota1  | |
关键词: Electric Field; Transmission Line; Polymeric Isolator; Corona Effect; Anti-Corona Ring; Finite Element Method; | |
DOI : 10.3844/ajassp.2013.628.637 | |
学科分类:自然科学(综合) | |
来源: Science Publications | |
【 摘 要 】
This study presents a detailed study of the electric field in polymeric isolators of the 500kV voltage class through modifications in the dimensions of the anti-corona ring. That is, by varying the three dimensions of the anti-corona ring: height (h), distance of the anti-corona ring conductor (r) and the diameter of the anti-corona ring conductor (d); it was possible to observe the electric field distribution in a polymeric isolator of the 500 kV voltage class. Such voltage class in currently applied to prevent loss of energy in long transmission lines. However it faces disadvantages, like the problem of the increased corona effect, which besides generating electromagnetic noise, increases the level of the electric field around the conductors and the isolator. The corona effect is responsible for an electric energy loss that is in the order of hundreds of kW/km in TLs and generates noises that reach up to 65dBm. This effect occurs when the airs critical value is exceeded, causing the electrons to collide with air resulting in the formation of ozone which is a major cause of corrosion in isolators. In this study, this issue is addressed and it is outlined sizing measures for manufactoring the anti-corona ring.
【 授权许可】
Unknown
【 预 览 】
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RO201911300006969ZK.pdf | 444KB | download |