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首页> 外文期刊>IEEE Transactions on Power Delivery >Experimental Research on the Surface Discharge Characteristics for a HTS Cable Termination
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Experimental Research on the Surface Discharge Characteristics for a HTS Cable Termination

机译:高温超导电缆终端表面放电特性的实验研究

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摘要

As energy demands increase and environmental concerns heighten, an underground high-temperature superconducting (HTS) cable will provide the necessary alternative to meet power supply needs. Within conventional cable technology, the terminations are important components. HTS cable terminations are required when the insulated shield HTS cables connect with other conductors such as a bus or uninsulated overhead lines. HTS cable terminations must span a temperature range from 77 to 300°K. The termination is insulated with insulating oil or air, cryogenic gaseous nitrogen, and liquid nitrogen. Difficult conditions for high-voltage insulation had to be overcome with HTS cable. Different environments can substantially raise the flashover possibility at a HTS cable termination. This paper will report on experimental investigations of the surface flashover of terminations with various surface lengths and different glass fiber-reinforced plastics thicknesses in air, transformer oil, liquid nitrogen (LN{sub}2), and complex conditions. This paper examined the surface flashover characteristics under ac voltage application for the Oil-LN{sub}2 type using a model electrode containing a particle. The particle initiated flashover voltage versus a termination without a particle. Particle position was also investigated.
机译:随着能源需求的增加和环境问题的加剧,地下高温超导(HTS)电缆将提供满足电源需求的必要替代方案。在常规电缆技术中,端接是重要的组件。当绝缘屏蔽HTS电缆与其他导体(例如总线或非绝缘架空线)连接时,需要HTS电缆端接。 HTS电缆端子的温度范围必须在77至300°K之间。终端用绝缘油或空气,低温气态氮和液氮绝缘。 HTS电缆必须克服高压绝缘的困难条件。不同的环境可能会大大增加HTS电缆终端处的跳火可能性。本文将报告在空气,变压器油,液氮(LN {sub} 2)和复杂条件下具有不同表面长度和不同玻璃纤维增​​强塑料厚度的终端的表面闪络的实验研究。本文使用包含颗粒的模型电极检查了交流电施加下Oil-LN {sub} 2型表面的闪络特性。相对于没有粒子的终端,粒子引发的闪络电压。还研究了颗粒位置。

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