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Demonstration of a 67 kA vapor-cooled current lead with improved thermal efficiency

机译:演示67 kA蒸气冷却的电流引线,具有改善的热效率

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Conventionally designed vapor-cooled leads used in superconducting magnetic energy storage device (SMES) must be optimized at the maximum current. The standard optimization practice, which minimizes the sum of the Joule and conduction heat inputs, incurs a penalty for a diurnal SMES device because of its variable current duty cycle. A new design has been tested that uses an array of parallel current leads with independent liquid helium (LHe) level control which significantly reduces the cryogen heat load in a superconducting magnet that operates at variable currents. At reduced magnet currents, one or more parallel leads in the array is "shunted out" by lowering the LHe levels. The increased electrical and thermal resistance of those leads reduces the total LHe boil-off of the array. Test results on a 67 kA lead are presented, showing an 80% reduction in LHe consumption at zero current when compared to a conventional lead.
机译:必须在最大电流下优化用于超导磁能存储设备(SMES)的常规设计的气冷引线。标准的优化实践将焦耳和传导热输入的总和减到最小,由于它的可变电流占空比,因而对昼夜SMES器件造成了损失。已经测试了一种新设计,该设计使用带有独立液氦(LHe)液位控制的并联电流引线阵列,可显着降低在可变电流下工作的超导磁体中的制冷剂热负荷。在降低磁体电流的情况下,通过降低LHe电平可“分流”阵列中的一根或多根平行引线。这些引线增加的电阻和热阻减少了阵列的总LHe蒸发。给出了在67 kA导线上的测试结果,与传统导线相比,在零电流下LHe消耗降低了80%。

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