提高电缆可靠性的电缆接头优化设计研究

Chenhui Li, Hao Qin, Jie Wang, Tuofu Zhu, Changhai Sun, Kai Shi
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引用次数: 0

摘要

随着新能源技术的发展,直埋电缆接头的可靠性对电能质量起着重要的作用。传统的六角形环绕压力连接方法容易出现故障。通过现场调查和COMSOL模拟,对其破坏机理进行了研究,设计了一种新型的电缆接头连接方式。比较两种连接方式,六角形环压连接方式仅通过压接管进行电气和机械连接。易发生热变形。在相同电流激励下,新连接方式使最大电流密度降低82.6%,最大温升降低60.3%,最大热变形降低82.8%。定量分析了新接头尺寸对电场、温度和变形的影响。结果表明:连接位置的电场分布和变形变量分布由触点和连接管共同决定,而电场分布主要由触点决定;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Optimization Design of Cable Joint for Improving Cable Reliability
With the development of new energy technology, the reliability of direct burial cable joints plays an important role in power quality. The traditional hexagonal surround pressure connection method is prone to faults. A study of the failure mechanism is made through the site investigation and COMSOL simulation, then a new type of cable joint connection is designed. Comparing the two connection methods, the hexagonal surround pressure connection method is electrically and mechanically connected only by crimp tubes. It is apt to heat deformation. Under the same current excitation, the new connection method reduces the maximum current density by 82.6%, the maximum temperature rise by 60.3%, and the maximum thermal deformation by 82.8%. The effect of the dimensions of the new connection on the electric field, temperature and deformation is quantitatively analyzed. The results show that the electric field distribution and the deformation variable distribution at the connection position are jointly determined by the contact and the connecting tube, whereas the electric field distribution is mainly determined by the contact.
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