Lightning transient simulation and analysis of EGLA under single-ended circuit breaker open system
M. T. Chen, S. J. Hsiao
Abstract
M. T. Chen, S. J. Hsiao
Abstract
The lightning strike overvoltage is the main reason which causes the overhead transmission application of externally gapped line surge arrester (EGLA). When single-ended gas circuit breaker (GCB) is required by system power flow with normal open. However, under the normal open conditions, when a lightning overvoltage strikes overhead transmission lines at the export of substation, flashover may occurs from the arc horn of post insulation of air-break switch (ABS) or even burning accident of GCB occurs. This paper presents the study of lightning surges performance transient overvoltage in a 69kV circuit breaker normally open system. Then, major criteria suggested by IEEE and IEC standards are used to assess the level of insulation coordination of a 69kV circuit breaker normally open system.
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The lightning strike overvoltage is the main reason which causes the overhead transmission application of externally gapped line surge arrester (EGLA). When single-ended gas circuit breaker (GCB) is required by system power flow with normal open. However, under the normal open conditions, when a lightning overvoltage strikes overhead transmission lines at the export of substation, flashover may occurs from the arc horn of post insulation of air-break switch (ABS) or even burning accident of GCB occurs. This paper presents the study of lightning surges performance transient overvoltage in a 69kV circuit breaker normally open system. Then, major criteria suggested by IEEE and IEC standards are used to assess the level of insulation coordination of a 69kV circuit breaker normally open system.
Key concepts: Overvoltage, Circuit breaker, Lightning arrester, Surge arrester, Electrical engineering, Disconnector, Transient (computer programming), Lightning (connector)