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Specifications and performance experience of pool boiling cooled magnets

机译:池沸腾冷却磁体的规格和性能经验

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摘要

Large superconducting magnets have three kinds of conductor-cooling methods; liquid helium pool boiling cooling, two-phase helium indirect cooling, or supercritical helium internal cooling. Practical superconducting magnets in their thirty years' history have had a lot of failure experiences. Electrical breakdown of insulation is the most fatal for pool boiling cooled magnets, because those magnets are unable to be utilized again, unlike quenched magnets. The insulation design of the coil winding is one of the most important key points for a pool boiling cooled magnet, where the coil protection conditions need to be considered. They are the maximum temperature rise at a quench and the maximum voltage at current interruption. In this paper, an overview of magnet insulation design, the introduction of stored energy scaling law on rated coil current, and the engineering contents of helical coils assembled into the Large Helical Device and excited in March 1998 as an example of insulation design are described. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 53]
机译:大型超导磁体具有三种冷却导体的方法:液氦池沸腾冷却,两相氦气间接冷却或超临界氦气内部冷却。实用的超导磁体在其三十多年的历史中曾经历过很多失败的经历。对于池沸腾冷却的磁体,绝缘的电击穿是最致命的,因为与淬火磁体不同,这些磁体无法再次使用。对于池沸腾冷却的磁体,线圈绕组的绝缘设计是最重要的关键点之一,在这种情况下,需要考虑线圈的保护条件。它们是淬火时的最大温度升高和电流中断时的最大电压。本文概述了磁体绝缘设计,引入了额定线圈电流的储能缩放比例定律,以及作为绝缘设计实例的1998年3月组装到大型螺旋装置中并激励的螺旋线圈的工程内容。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:53]

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