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Characterization of Gaseous Helium Flow Cryogen in a Flexible Cryostat for Naval Applications of High Temperature Superconductors

机译:用于高温超导体的舰船用柔性低温恒温器中气态氦流动低温的特性

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A fifty meter proof of concept demonstrator was developed utilizing gaseous helium as a cryogen for the use in a High Temperature Superconductor (HTS) based degaussing system for use on Navy ships. Increased signature requirements as Navy future missions move into littoral waters have resulted in a new copper degaussing system. This system has an increased weight and installation cost because of the additional copper cable required. High temperature superconductors have been suggested as a replacement to the copper based cable to reduce system weight while maintaining the desired ship''s magnetic signature. A feasibility study was conducted in 2004 that showed that a superconductive system provided the same performance at a lower cost and at a lower system weight. Many terrestrial superconducting cable projects use liquid nitrogen as the cryogen to keep the cable cold. However, an inert, gaseous cryogen would be preferred for naval applications, but such a cooling system has never been demonstrated in a power cable. This paper describes the experimental setup and preliminary results of testing a helium cooled loop for use in a HTS based degaussing system.
机译:开发了一个五十米的概念验证演示器,该演示器使用气态氦作为制冷剂,用于基于高温超导体(HTS)的消磁系统,用于海军舰船。随着海军未来的任务进入沿海水域,签名要求的增加导致了新的铜消磁系统。由于需要额外的铜缆,该系统的重量和安装成本增加。有人建议使用高温超导体代替铜基电缆,以减轻系统重量,同时保持所需的船舶磁性。 2004年进行的可行性研究表明,超导系统以较低的成本和较低的系统重量提供了相同的性能。许多地面超导电缆项目都使用液氮作为冷冻剂来保持电缆的低温。然而,对于海军应用而言,惰性的气态致冷剂将是优选的,但是这种冷却系统从未在电力电缆中得到证明。本文介绍了用于基于HTS的消磁系统的氦冷却回路的实验设置和初步结果。

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