首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Thermal optimum analyses and mechanical design of 10-kA, vapor-cooled power leads for SSC superconducting magnet tests at MTL
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Thermal optimum analyses and mechanical design of 10-kA, vapor-cooled power leads for SSC superconducting magnet tests at MTL

机译:用于MTL的SSC超导磁体测试的10 kA蒸气冷却电源引线的热优化分析和机械设计

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摘要

Spiral-fan, 10-kA, helium vapor-cooled power leads have been designed for Superconducting Super Collider superconducting magnet tests at the Magnet Test Laboratory. To thermally optimize the parameters of the power leads, the lead diameters, which minimize the Carnot work for several different lengths, two different fin geometries, and two RRR values of the lead materials were determined. The cryogenic refrigeration and liquefaction loads for supporting the leads have also been calculated. The optimum operational condition with different currents is discussed. An improved mechanical design of the 10-kA power leads was undertaken, with careful consideration of the cryogenic and mechanical performance. In the design, a new thermal barrier device to reduce heat conduction from the vacuum and gas seal area was used. Therefore, the electric insulation assembly, which isolates the ground potential parts of the lead from the high-power parts, was moved into a warm region to prevent vacuum and helium leakage in the O-ring seals due to transient cold temperature. The instrumentation for testing the power leads is also discussed.
机译:螺旋风扇,10 kA氦蒸气冷却的电源引线已设计用于磁体测试实验室的超导Super Collider超导磁体测试。为了热优化电源线的参数,确定了在几种不同长度,两种不同翅片几何形状以及两种引线材料的RRR值下使卡诺功最小的引线直径。还计算了用于支撑引线的低温制冷和液化载荷。讨论了不同电流下的最佳工作条件。仔细考虑了低温和机械性能,对10 kA电源线进行了改进的机械设计。在设计中,使用了一种新型的热障装置,以减少来自真空和气体密封区域的热传导。因此,将导线的接地电位部分与大功率部分隔离开的电气绝缘组件被移至温暖的区域,以防止由于瞬态低温而导致O形密封圈中的真空和氦气泄漏。还讨论了测试电源线的仪器。

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