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Tri-Axial Cable Terminations for 1.3- and 3-kA HTS Cables

机译:1.3-和3-KA HTS电缆的三轴电缆终端

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The Southwire/ORNL team has conceived, designed, built, and tested a 5-m, three-phase, tri-axial cable with terminations. The cable has three concentric superconducting phases made of BSCCO-2223 HTS tapes, separated by layers of cold-dielectric tape with a copper braid as the grounding shield. The cable is enclosed in a flexible cryostat. Cooling of the cable and terminations is achieved by liquid nitrogen flowing through the annulus between the cable and the cryostat. A challenging analysis and design issue was development and implementation of an insulator material between the concentric phases with high enough thermal conductivity to meet temperature gradient requirements and acceptable mechanical and electrical performance. The resulting 3-phase, cold dielectric, cable and termination design is nearly as compact as the single-phase, co-axial design developed previously by Southwire/ORNL, and it represents the highest cable current density achievable in an electric ac power cable. This paper presents results from operation of the 1.3-kA root-mean-square (rms) phase current termination and design changes required to scale to 3-kA rms phase current.
机译:Southwire / Ornl团队已经构思,设计,构建和测试了5米,三相,三轴电缆,终端。电缆具有三个同心超导阶段,由BSCCO-2223 HTS胶带制成,用带铜编织物作为接地屏蔽的铜织电带的层分开。电缆封闭在柔性低温恒温器中。通过流过电缆和低温恒温器之间的环空的液氮来实现电缆和终端的冷却。一个具有挑战性的分析和设计问题是具有高足够高的热导率的同心阶段之间的绝缘材料的开发和实施,以满足温度梯度要求和可接受的机电性能。由此产生的3相,冷电介质,电缆和终端设计几乎与先前通过SouthWire / Orn1开发的单相,共轴设计一样紧凑,并且它代表了电气电力电缆中可实现的最高电缆电流密度。本文介绍了1.3-ka根均值(rms)相电流终端和设计变化所需的0.3-ka根均线(RMS)电流的结果。

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