Duration of Current Application Until Outer Semiconducting Layer Started Burning and Temperature Increase across Gap in Samples Simulating Breakage of Shielding Layer in 6.6 kV XLPE Cable Under Constant AC Current
Author:
Affiliation:
1. Grid Innovation Research Laboratory, Central Research institute of Electric Power Industry,Electric Facility Technology Division,Kanagawa,Japan
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10328969/10328949/10329196.pdf?arnumber=10329196
Reference6 articles.
1. Investigations of Effects of Cable Insulation Thickness and Water Immersion on AC Breakdown Voltage and Degradation Diagnostic Data and Possibility of Detection of Non-bridged Water Trees of Dry-cured and Extruded Three-layer (E-E Type) 6.6kV XLPE Cables
2. Electric Wire & Cable Makers Assciation, “Maintenance and inspection guidelines for high-voltage cables;Japanese;Technical report No.116D,2012
3. Detection of Breakages of Shielding Copper Tapes and Investigation of Its Causes by Performing Accelerated Degradation Test for Shielding Copper Tapes in Extruded Three-layer 6.6 kV XLPE Cables
4. Measurements of Temperature Increase in Samples Simulating Breakage of Shielding Layer of 6.6 kV XLPE Cable under AC Voltage Assuming Induced Voltage;Kurihara,2022
5. Induced Voltage and Circulating Current on Metallic Shield of Triplexed-Type XLPE Power Cable;Fukuda;The Sumitomo Electric review,1994
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