基于多物理场模型的地下电缆温度分布模拟

Yanfei Yang, Qi Wang, Zhenxing Liu
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引用次数: 1

摘要

由于地下电缆埋置,使用时间长,负载不合理,容易导致绝缘劣化,发生事故。因此,准确把握外界因素对电缆温度分布的影响规律,才能合理设计敷设、回填方案,合理分配荷载。本文结合传热学的相关知识,利用有限元软件对埋地电力电缆的温度分布进行了研究。建立有限元模型,分析地下电缆敷设、不同导热系数热回填、不同电流负载对的空间几何参数。通过温度云图可以更直观地看到地下电缆温度场的影响。研究结果表明,合理的空间几何参数和热回填不仅有利于降低导线温度,减少安全隐患,节约一定成本,而且对充分利用电缆传输容量具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Underground Cable Temperature Distribution Based on Multiphysics Modeling
Because of buried underground cable, long service time and unreasonable load, it is easy to lead to insulation deterioration and accidents. Therefore, by accurately grasping the law of the influence of external factors on the temperature distribution of the cable, it is possible to rationally design the layout, backfill plan, and rationally distribute the load. This paper combines the knowledge of heat transfer and uses finite element software to study the temperature distribution of buried power cables. The finite element model built analyzes the spatial geometric parameters of underground cable laying, thermal backfill with different thermal conductivity, and different current load pairs. The influence of the temperature field of the underground cable can be seen more intuitively through the temperature cloud chart. The research results show that proper spatial geometric parameters and thermal backfill are not only beneficial to reduce conductor temperature, reduce safety hazards, and save a certain amount of cost, but are also of great significance to the full utilization of cable transmission capacity.
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