Comparison of Mathematical Models for the Thermodynamic Prediction of Underground High Voltage Cables
cable subterráneo, análisis de elementos finitos, ecuaciones diferenciales ordinarias, modelo termodinámico
Abstract
En este documento se describen dos modelos computacionales capaces de determinar el comportamiento termodinámico de cables subterráneos de alta tensión en función de las condiciones ambientales, propiedades intrínsecas del conductor y sus ciclos de carga. Adicionalmente a la descripción de ambos modelos, se realizó un ensayo de calentamiento cíclico
Downloads
How to Cite
References
R Xia, S Meng, Y Wang (2014) Long term reliability tests of 500 kV XLPE cable system. 1521-1524.
M Al-Saud, M El-Kady, R Findlay (2007) A Novel Finite-Element Optimization Algorithm with Applications to Power Cable Thermal Circuit Design. 1-8.
I Kocar, A Ertas (2004) Thermal analysis for determination of current carrying capacity of PE and XLPE insulated power cables using finite element method. 3, 905-908.
Ibtisam Al-Baldawi, Sahar Alsakini, Mohammed Abed (2019) The effects of sand and pipes on the temperature distributions of the underground cable. 518(4), 042012.
Nishanthi Duraisamy, H Gooi, Abhisek Ukil (2017) Modeling and analysis of HV cable ampacity for power flow optimization. 2017, 328-332.
L Yang (2018) Comparison of conductor-Temperature calculations based on different radial-position-Temperature detections for high-voltage power cable. 11(1).
K Lee, J Yang, Y Choi, D Park (2007) Specific heat and thermal conductivity measurement of XLPE insulator and semiconducting materials. 805-809.
Federico Scarpa, Mattia De Rosa (2016) TRANSIENT HEAT CONDUCTION IN WIRES WITH HEAT SOURCES; LUMPED AND DISTRIBUTED SOLUTION TECHNIQUES. 47(8), 753-765.
S Churchill, H Chu (1975) Correlating equations for laminar and turbulent free convection from a horizontal cylinder. 18(9), 1049-1053.
Published
2023-10-13
Issue
Section
License
Copyright (c) 2023 Authors and Global Journals Private Limited

This work is licensed under a Creative Commons Attribution 4.0 International License.