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首页> 外文期刊>Japanese journal of applied physics >Design of 154 kV Extra-High-Voltage Prototype SF_6 Bushing for Superconducting Electric Power Applications
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Design of 154 kV Extra-High-Voltage Prototype SF_6 Bushing for Superconducting Electric Power Applications

机译:用于超导电力应用的154 kV超高压原型SF_6套管的设计

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摘要

One of the critical components to be developed for high-voltage superconducting devices, such as superconducting transformers, cables, and fault current limiters, is a high-voltage bushing to supply a high current to devices without insulation difficulties in cryogenic environments. Unfortunately, suitable bushings for high-temperature-superconductivity (HTS) equipment have not been fully developed to address cryogenic insulation issues. As a fundamental step towards developing the optimum design of the 154 kV prototype SF_6 bushing of HTS devices, the puncture and creepage breakdown voltages of glass-fiber-reinforced-plastic (GFRP) were analyzed with a variety of configurations of electrodes and gap distances in the insulation material. And design factors of high-voltage cryogenic bushings were obtained from the result of tests. Finally, the withstand voltage tests of manufacturing a 154 kV extra-high-voltage (EHV) prototype bushing has been performed. Consequently, we verified the insulation level of the newly designed 154 kV EHV cryogenic prototype bushings for superconducting electric power applications.
机译:用于高压超导设备(例如超导变压器,电缆和故障电流限制器)的关键组件之一是高压套管,可在低温环境下向设备提供高电流而又不会造成绝缘困难。不幸的是,尚未完全开发出用于高温超导(HTS)设备的合适套管来解决低温绝缘问题。作为开发HTS装置154 kV原型SF_6套管最佳设计的基本步骤,分析了玻璃纤维增​​强塑料(GFRP)的穿刺和爬电击穿电压,其中包括各种电极配置和间隙距离。绝缘材料。根据试验结果,得出了高压低温套管的设计系数。最后,已经完成了制造154 kV超高压(EHV)原型套管的耐压测试。因此,我们验证了用于超导电力应用的新设计的154 kV EHV低温原型套管的绝缘水平。

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  • 来源
    《Japanese journal of applied physics》 |2012年第9issue3期|09ME01.1-09ME01.5|共5页
  • 作者单位

    Department of Electronic, Electrical, Control and Instrumentation Engineering of Hanyang University, Ansan, Gyeonggi 426-791, Korea;

    Department of Electronic, Electrical, Control and Instrumentation Engineering of Hanyang University, Ansan, Gyeonggi 426-791, Korea;

    Department of Electronic, Electrical, Control and Instrumentation Engineering of Hanyang University, Ansan, Gyeonggi 426-791, Korea;

    Department of Electronic, Electrical, Control and Instrumentation Engineering of Hanyang University, Ansan, Gyeonggi 426-791, Korea;

    Expert Group Electric and Control Department, Korea Institute of Nuclear Safety, Daejeon 305-600, Korea;

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