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Design of 30 T split-pair pulse coils for LANSCE

机译:用于LANSCE的30 T对分脉冲线圈的设计

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The NHMFL has designed a high-frequency split-pair coil system for the Los Alamos Neutron Science Center (LANSCE) that can achieve fields up to 30 T for greater than 10/sup 5/ cycles and up to 26 T for 10/sup 7/ cycles in a 20 mm bore and a 5 mm clear split at the midplane. The magnet system pushes the limits of the technology by requiring a clear split, except for 14 mm of aluminum, and a 2 Hz pulse frequency. The 14 mm of aluminum is in the form of rings required to help support the 1337 kN magnetic load between the two coil halves. The clear split allows the neutrons to travel unobstructed from source to detector. The 2 Hz pulse frequency requires that the coils be continuously cooled with de-ionized water flowing at 15 m/s along the inner diameters of each coil. This paper summarizes the overall design, discusses some of the key features and predicts the coil fatigue performance based on available conductor fatigue properties. The coils are presently being fabricated and scheduled for delivery to the LANSCE in early 2000.
机译:NHMFL为洛斯阿拉莫斯中子科学中心(LANSCE)设计了一个高频对分线圈系统,该系统可实现高达30 T的磁场(大于10 / sup 5 /个循环)和高达26 T的磁场(10 / sup 7)。 /循环在20毫米的孔中进行,并在中平面进行5毫米的透明裂口。磁铁系统要求进行清晰的分割,突破了技术的局限,除了14毫米的铝和2 Hz的脉冲频率。需要14毫米的铝以环形形式,以帮助支撑两个线圈半部之间的1337 kN磁性负载。清晰的分裂使中子从源到探测器的传播不受阻碍。 2 Hz脉冲频率要求使用去离子水沿每个线圈的内径以15 m / s的速度连续冷却线圈。本文总结了总体设计,讨论了一些关键特性,并根据可用的导体疲劳特性预测了线圈的疲劳性能。这些线圈目前正在制造中,计划于2000年初交付给LANSCE。

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