Title :
Modelling and sensitivity analysis of the thermal behaviour of cables for different current conditions
Author :
Desmet, J.J. ; Putman, D.J. ; Vanalme, G.M. ; Belmans, R.J.
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. Hogeschool West-Vlaanderen, Kortrijk, Belgium
Abstract :
Asymmetry, unbalance and nonlinearity of loads affect the current distribution in both phase and neutral conductor cores in three phase power supply systems. Especially in cases of nonlinear single phase loads the neutral conductor can be loaded with an excessive current. Consequently, cable temperature, which is directly related to the power dissipation, is highly affected. Applying a maximum insulation temperature as boundary condition, the power conducting capacity of LV-cables will substantially be affected by asymmetry, unbalance and especially nonlinearity of loads. Physical cable parameters with respect to both thermal resistance and cable geometry were analyzed in order to determinate the most relevant influencing parameters. The temperature distribution in the cable section is thermally calculated and is subsequently simulated, using 2D finite element modelling. Finally, measurements of the cable temperature are performed verifying the simulation results.
Keywords :
finite element analysis; power cable insulation; power cable testing; power supply quality; power system harmonics; power system simulation; sensitivity analysis; temperature distribution; temperature measurement; thermal resistance; 2D finite element modelling; LV-cable; boundary condition; cable geometry; conductor core; current distribution; insulation temperature; losses; nonlinear load; power conducting capacity; power dissipation; power quality; power system harmonics; sensitivity analysis; temperature distribution; temperature measurement; thermal behaviour; thermal resistance; three phase power supply system; Cables; Conductors; Current distribution; Insulation; Power dissipation; Power supplies; Power system modeling; Sensitivity analysis; Temperature; Thermal resistance;
Conference_Titel :
Harmonics and Quality of Power, 2004. 11th International Conference on
Print_ISBN :
0-7803-8746-5
DOI :
10.1109/ICHQP.2004.1409400