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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A design for the superconducting outsert of a 45-T hybrid magnet system using cable-in-conduit conductors
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A design for the superconducting outsert of a 45-T hybrid magnet system using cable-in-conduit conductors

机译:使用导管中导体的45-T混合磁体系统的超导插口设计

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摘要

A part of the mission of the new NHMFL is to have available for users in 1995 a hybrid magnet system capable of producing at least 45-T steady field on axis in a 33-mm working bore. Approximately 31 T of the combined field will be produced by a water-cooled insert. The superconducting outsert, which combines NbTi and Nb/sub 3/Sn conductor technologies, will provide more than 14 T. The authors describe an option for this superconducting outsert based on the cable-in-conduit-conductor (CICC) approach, where cabled strands of conductor are contained in intimate contact with helium coolant inside a strong steel sheath that also acts as distributed structure. A departure from the usual practice for CICC technology is in the application of static Hell cooling, which simultaneously provides higher conductor performance and nearly passive extraction of the rather modest heat loads during normal operation of the magnet system.
机译:新型NHMFL的部分任务是在1995年为用户提供一种混合磁体系统,该系统能够在33mm的工作孔中产生至少45T的轴向恒定磁场。水冷刀片将产生约31 T的合并磁场。结合了NbTi和Nb / sub 3 / Sn导体技术的超导插座,将提供超过14 T的温度。作者介绍了一种基于导线内导体(CICC)方法的超导插座的选择,其中使用了电缆导体束与氦冷却剂紧密接触,并与坚固的钢护套内的氦冷却剂紧密接触,该钢护套也用作分布式结构。静态地狱冷却的应用与CICC技术的常规做法有所不同,静态地狱冷却同时提供了更高的导体性能,并且在磁体系统正常运行期间几乎被动地吸收了适度的热负荷。

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