Heat blockage of air gap for inner overheating of high-voltage power cable and delay of early detection

Author:

Xie Qiyuan1ORCID,Chen Hong1,Yuan Yanhua12

Affiliation:

1. State Key Lab of Fire Science, University of Science and Technology of China, Hefei, China

2. Shanghai Fire Research Institute of MEM, Shanghai, China

Abstract

Early detection for inner overheating of high-voltage cable is important for safe power supply. A new radial heat transfer model is developed for a typical 110 kV cable with an air gap layer. Numerical analyses are conducted for dynamic temperature field in cable induced by hot copper core with different thicknesses of air gap. The results show that the air gap has an important heat blockage for the outward heat transfer in cable. The air gap causes the temperature inside the overheated cable to rise faster and the temperature outside slower. The air gap not only reduces the response sensitivity of the surface temperature on inner overheating but also induces the inner layers to heat up and even break down. Finally, the non-dimensional temperatures on cable surface indicate that the detection of inner overheating cable would be delayed if the air gap is not considered in calculation models.

Funder

fundamental research funds for the central universities

key technologies research and development program

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

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