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首页> 外文期刊>Physica, C. Superconductivity and its applications >Numerical simulation on fault current condition in 66 kV class RE-123 superconducting cable
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Numerical simulation on fault current condition in 66 kV class RE-123 superconducting cable

机译:66 kV RE-123级超导电缆故障电流状况的数值模拟

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摘要

The new Japanese national project of development of 66 kV/5 kA high-temperature superconducting (HTS) power cables has been started since 2008. In an AC power system, a fault current may flow in the event of a short circuit accident. The maximum fault current condition is defined to be 31.5 kA _(rms) for duration of 2 s for 66 kV class transmission line in this project. Therefore, one of the technical targets in this project is to design the HTS power cable to survive at this fault current condition. The coated conductors have copper layer as a stabilizer not to be damaged by over-currents. The HTS cable has a copper former and copper shield layers in parallel with the HTS conductor layers and HTS shield layers, respectively, to control the temperature rises in the HTS cable at a fault accident. In this study, we simulated the maximum temperature rises in the HTS power cable at the fault current condition of 31.5 kA_(rms) for 2 s in order to design the copper stabilizer and copper shield layers by using a computer program we developed on the basis of 3D finite element method (FEM) and electrical circuit model.
机译:从2008年开始,日本就开始了一项新的国家开发66 kV / 5 kA高温超导(HTS)电力电缆的项目。在交流电源系统中,如果发生短路事故,故障电流可能会流过。在此项目中,对于66 kV级输电线,最大故障电流条件定义为31.5 kA _(rms),持续2 s。因此,该项目的技术目标之一是设计高温超导电缆,使其在这种故障电流条件下仍能正常使用。涂覆的导体具有铜层作为稳定剂,不会被过电流损坏。 HTS电缆具有分别与HTS导体层和HTS屏蔽层平行的铜管和铜屏蔽层,以控制发生故障时HTS电缆中的温度升高。在这项研究中,我们模拟了故障电流条件为31.5 kA_(rms)的HTS电力电缆在2 s内的最大温升,以便使用我们在此基础上开发的计算机程序设计铜稳定剂和铜屏蔽层3D有限元方法(FEM)和电路模型的设计。

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