Analysis of influential factors on the underground cable ampacity

Youyuan Wang, Rengang Chen, Jian Li, S. Grzybowski, Taosha Jiang
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引用次数: 6

Abstract

The extensive usage of underground cables is a typical feature of modern power distribution networks. To analyze the influential factors on the underground cable ampacity, a new numerical method to calculate the ampacity of the underground cable is described in this paper. It is programmed by COMSOL software, which is based on the principle of heat transfer and the Finite Element Method. This model completely takes into account the local cable conditions and complicated variable external environments. Its parameters can be updated according to the change of these influencing factors. The developed model is applied to analyze the impact of the different influential factors on the underground cable ampacity. The results show that the underground cable ampacity depends on many of the installation properties and conditions, of which the soil thermal resistance, the environment temperature, the laying way (the cable spacing and the cable number in the trench) and the external heat source are the main factors. The underground cable ampacity increases with the increase of the soil thermal conductivity and the distance from the external heat source, while it decreases linearly with the increases of the environment temperature.
影响地下电缆容量的因素分析
地下电缆的广泛使用是现代配电网的一个典型特征。为了分析影响地下电缆容量的因素,提出了一种新的计算地下电缆容量的数值方法。采用COMSOL软件,根据传热学原理和有限元法进行编程。该模型充分考虑了当地电缆条件和复杂多变的外部环境。其参数可以根据这些影响因素的变化进行更新。应用所建立的模型,分析了不同影响因素对地下电缆容量的影响。结果表明,地下电缆的容量取决于许多安装特性和条件,其中土壤热阻、环境温度、敷设方式(电缆间距和槽内电缆数)和外部热源是主要影响因素。地下电缆电容量随土壤导热系数和与外界热源距离的增大而增大,随环境温度的升高而线性减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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