热对电缆绝缘击穿的影响

Runzu Zhang, Anhui Feng, Yongbo Zhang, Ye Liu, Pengfei Liu, Zhongzu Zhou, Weiqing Yang, Jian-Cheng Yang, YanLin Shi
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引用次数: 0

摘要

对于兰州重离子加速器设施(HIRFL)来说,电缆是传输信号的重要介质之一。电源通过电缆为磁体提供励磁电流,电源输出的电流大小决定了束流通量的质量。当电流通过电缆时会产生热量,如果电缆表面温度超过最高工作温度,电缆的绝缘就会发生热击穿。本文以四极杆供电电缆为例,建立了有限元软件,分析了电缆在不同电流下的温度分布。仿真结果表明,当电流达到190A时,最低温度达到现有电缆表面的耐受温度;电流越大,电缆的温差越大。最后,提出了电缆的最优选择。本研究为加速器的综合布线提供了数据支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of thermal on cable insulation breakdown
As for the Heavy Ion Accelerator Facility in Lan zhou (HIRFL), cables are one of the important media for transmitting signals. The power supply provides the excitation current for the magnet through the cable, and the current magnitude output from the power supply determines the quality of the beam flux. The heat will be generated when the current passes through the cable, if the cable skin temperature exceeds the maximum operating temperature, the cable will suffer a thermal breakdown of the insulation. The paper takes the quadrupole power supply cable as an example and establishes finite element software to analyse the temperature distribution of the cable at different currents. The simulation results show that when the current reaches 190A, the lowest temperature reaches the present cable surface’s tolerable temperature; the higher the current, the greater the temperature difference of the cable. Finally, an optimal selection of cables is proposed. This study provides data support for the generic cabling of the accelerator.
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