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First Electrical Characterization of Prototype 600 A HTS Twisted-pair Cables at Different Temperatures

机译:不同温度下600 A HTS原型双绞线电缆的首次电气特性

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摘要

Following the development of twisted-pair cables prepared with High Temperature Superconducting (HTS) tapes and their initial tests at 4.2 K in liquid helium at CERN, the cable samples of 2 m lengths were subsequently tested in flowing helium gas at temperatures between 10 K and 77 K at University of Southampton. A cryostat with optimized hybrid HTS current leads was purposely built for the tests up to 2.5 kA. The cryostat has two separate helium flow conduits, each accommodating a twisted pair and allowing independent temperature control. With the completion of the tests on the twisted-pair cables, a 5 m long semi-flexible Nexans cryostat was also set up for the testing of prototype HTS links assembled at CERN. The link, which is optimized for application to the remote powering of LHC 600 A electrical circuits, consists of a compact multi-cable assembly with up to 25 twisted-pair 600 A HTS tapes. The cables are cooled by a forced-flow of helium gas the inlet temperature of which can be changed in order to compare the electrical performance over a range of temperatures. The paper reports on the results of powering tests performed on the individual cables and the integration process for the forthcoming tests of the prototype links.
机译:继开发了用高温超导(HTS)胶带制备的双绞线电缆并在CERN的液氦中于4.2 K进行了初始测试之后,随后在流动氦气中在10 K至200 K之间的温度下测试了2 m长的电缆样本。南安普敦大学的77K。专门设计了具有优化的混合HTS电流引线的低温恒温器,用于高达2.5 kA的测试。低温恒温器有两个独立的氦流导管,每个导管都可容纳双绞线并允许独立的温度控制。随着双绞线电缆测试的完成,还建立了一个5 m长的半柔韧性耐克森低温恒温器,以测试在CERN组装的HTS原型链接。该链路经过优化,可应用于LHC 600 A电路的远程供电,它由一个紧凑的多电缆组件组成,该组件具有多达25条双绞线600 A HTS胶带。电缆通过强制流动的氦气进行冷却,可以改变氦气的入口温度,以便在一定温度范围内比较电气性能。该白皮书报告了对单根电缆进行的功率测试结果以及即将进行的原型链路测试的集成过程。

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