DocumentCode
1540841
Title
Design, simulation and testing of an EHV metal-enclosed disconnector
Author
Lopez-Roldan, Jose ; Irwin, Terry ; Nurse, Steve ; Ebden, Christopher ; Hansson, Jim
Author_Institution
VA Tech Reyrolle, Tyne and Wear, UK
Volume
16
Issue
4
fYear
2001
fDate
10/1/2001 12:00:00 AM
Firstpage
558
Lastpage
563
Abstract
One of the most demanding design issues in the development of metal-clad disconnecters for application at 500 kV and over is to ensure the switching capabilities of the device. This paper presents the issues and processes involved from the initial design through to final testing of a 550 kV disconnector. The initial work concentrated on defining the design parameters in order to minimize the risk of arc breakout. Computer analysis using 2D and 3D modeling of the contact configuration was carried out. As a following step, before building the disconnector, the results of the computations were validated by a static test where the electrode arrangement was set manually at different gap distances and discharges between contacts were monitored. From the computational and test data a final contact design was optimized and a disconnector prototype was built. Finally the capabilities for bus-charging current switching were tested in accordance with the IEC 1259 standard. The results of these tests include measurement and comparison with EMTP simulations of the fast transient overvoltages generated by disconnector operations
Keywords
EMTP; electrodes; overvoltage; switchgear testing; switching; transient analysis; 2D modeling; 3D modeling; 550 kV; EHV metal-enclosed disconnector; EMTP simulations; GIS disconnector; IEC 1259 standard; arc breakout risk minimisation; bus-charging current switching; computer analysis; contact configuration; contact design optimisation; design issues; electrode arrangement; fast transient overvoltages; final testing; initial design; static test; switching capabilities; Buildings; Computational modeling; Computerized monitoring; Design optimization; EMTP; Electrodes; IEC standards; Prototypes; Surges; Testing;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.956737
Filename
956737
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