首页> 外文会议>Advances in Cryogenic Engineering - Materials: Proceedings of the International Cryogenic Materials Conference >Design and Preparation of Two ReBCO-CORC~R Cable-In-Conduit Conductors for Fusion and Detector Magnets
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Design and Preparation of Two ReBCO-CORC~R Cable-In-Conduit Conductors for Fusion and Detector Magnets

机译:两种Rebco-Corc〜R电缆导管用于融合和探测器磁铁的设计与准备

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Two new ReBCO-CORC~R based cable-in-conduit conductors (CICC) are developed by CERN in collaboration with ACT-Boulder. Both conductors feature a critical current of about 80 kA at 4.5 K and 12 T. One conductor is designed for operation in large detector magnets, while the other is aimed for application in fusion type magnets. The conductors use a six-around-one cable geometry with six flexible ReBCO CORC~R strands twisted around a central tube. The fusion CICC is designed to be cooled by the internal forced flow of either helium gas or supercritical helium to cope with high heat loads in superconducting magnets in large fusion experimental reactors. In addition, the cable is enclosed by a stainless steel jacket to accommodate with the high level of Lorentz forces present in such magnets. Detector type magnets require stable, high-current conductors. Therefore, the detector CORC~R CICC comprises an OFHC copper jacket with external conduction cooling, which is advantageous due to its simplicity. A 2.8 m long sample of each conductor is manufactured and prepared for testing in the Sultan facility at PSI Villigen. In the paper, the conductor design and assembly steps for both CORC~R CICCs are highlighted.
机译:两种新的Rebco-Corc〜R基于CON-IN-IN-IN-CORCUIT导体(CICC)由CERN与ACT-BOULDER合作开发。两个导线在4.5 k和12t处具有约80ka的临界电流。一个导体设计用于大型探测器磁铁中的操作,而另一个导体旨在用于熔融型磁体中的应用。导体使用六个左右的电缆几何形状,围绕中心管扭曲了六个灵活的rebco corc〜r股。融合CICC设计用于通过氦气或超临界氦的内部强制流冷却,以应对大型融合实验反应器中的超导磁体中的高热负荷。此外,电缆由不锈钢护套封闭,以容纳在这种磁体中存在的高水平的洛伦兹力。探测器型磁铁需要稳定,高电流导体。因此,检测器CORC〜R CICC包括具有外部导通冷却的OFHC铜夹套,这是由于其简单性而有利的。制造并准备在PSI绒边的苏丹设施中进行2.8米长的每种导体样品。在纸质中,突出了CORC〜R CICCS的导体设计和组装步骤。

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