Research on Lightning Overvoltage of 110 kV Line of Canceling Ground Wire and Installing Composite Arrester Combined Insulator
ID:35 View Protection:ATTENDEE Updated Time:2022-08-29 10:54:17 Hits:285 Oral Presentation

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Abstract
The 110 kV transmission line passing the mountain areas is prone to severe icing on the conductors and overhead ground wires in winter as a result of micro landform and climate. While severe icing of the overhead ground wire will increase the sagging of the ground wire, causing the discharge of the phase wire to the ground wire and probably a disconnection accident. Since there is no effective ice-melting measure for the icing of overhead ground wires now, canceling the overhead ground wires is considered feasible to reduce icing accidents. The lightning strike problems caused by the removal of the ground wire will affect the normal operation of the line, so the composite arrester combined insulator with lightning protection function can be installed in the line to avoid this. This paper is based on the electromagnetic transient simulation software ATP, a lightning strike simulation model of the line without ground wire was built. The distribution law of lightning overvoltage on the tower top, composite arrester combined insulator insulation section, lightning protection section and wires is analyzed when the line is struck by lightning. Under the lightning current amplitude of 160 kA, the overvoltage of the lightning protection section is only 280.8 kV when the tower is struck by lightning, and the overvoltage of the lightning protection section reaches 346.07 kV when the lightning strikes the wire. The research results show that due to the special working principle of the composite arrester combined insulator, the lightning overvoltage will be clamped at a very low level under the action of the arrester, and it is difficult to cause the trip of the grounding line.
 
Keywords
Ground wire; Composite arrester combined insulator; Lightning overvoltage; Trip
Speaker
Ting Zhu
State Key Laboratory of Power Transmission Equipment & System Security and New Technology

Submission Author
Jianlin HU State Key Laboratory of Power Transmission Equipment & System Security and New Technology
Ting Zhu State Key Laboratory of Power Transmission Equipment & System Security and New Technology
Jianping Hu Disaster Prevention and Reduction Center of State Grid Hunan Electric Power Corporation
Zhen Fang Disaster Prevention and Reduction Center of State Grid Hunan Electric Power Corporation
Ruihe Zhang State Key Laboratory of Power Transmission Equipment & System Security and New Technology
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    Sep 25

    2022

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    Sep 29

    2022

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