학술논문

Multi-factor Analysis of Temperature Rise of Insulated Jumper Clamp Based on Electric-thermal Multi-physical Field Coupling in Live Work
Document Type
Conference
Source
2022 IEEE 3rd China International Youth Conference on Electrical Engineering (CIYCEE) Electrical Engineering (CIYCEE), 2022 IEEE 3rd China International Youth Conference on. :1-7 Nov, 2022
Subject
Fields, Waves and Electromagnetics
Power, Energy and Industry Applications
Robotics and Control Systems
Transportation
Temperature distribution
Analytical models
Wind speed
Conductivity
Mathematical models
Thermal analysis
Clamps
multi-physical field
insulated jumper clamp
live work
temperature rise
orthogonal experiment method
linear regression
Language
Abstract
Insulated jumper clamp is a common tool for current-carry equipment with load in the operation of a distribution line without power failure. The temperature rise characteristic of insulated jumper clamp is important to the safety of personnel and equipment. This paper takes SJ1503 insulated drain clamp as the research object, simulates and calculates the temperature rise of insulated drain clamp by using the electric thermal multi-physical field coupling method, analyzes the mutual influence of the clamp on the temperature rise of the clamp in the environment temperature, light intensity, wind speed, and current load, and the simulation calculation shows that the wind speed can promote the decrease of the temperature rise of the clamp; The significance of each factor of the clamp temperature rise is analyzed by using the orthogonal experiment method. The results show that the ambient temperature and current load have a significant effect on the insulation and drainage clamp temperature rise, and the light intensity has no significant effect on the clamp temperature rise. The order of significance is current load(C) > ambient temperature(B) > light intensity(A); Through multiple linear regression analysis, the fitting equation of clamp temperature is obtained: the cable clamp temperature =308.625-1.025A +5.125B+10.675C, which provides a basis for the operation, design, maintenance and personnel protection of insulated jumper clamps in live line operation.