Design of a large-scale superconducting dipole magnet for the CEE spectrometer

Yuquan Chen, Wei You, Jiaqi Lu, Yujin Tong, Luncai Zhou, Beimin Wu, Enming Mei, Wentian Feng, Xianjin Ou, Wei Wu, Qinggao Yao, Peng Yang, Yuhong Yu, Zhiyu Sun
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Abstract

The CSR External-target Experiment (CEE) is a large-scale spectrometer under construction at the Heavy Ion Research Facility in Lanzhou (HIRFL) for studying the phase structure of nuclear matter at high baryon density and the equation of states of nuclear matter at supra-saturation densities. One of the key components is a large acceptance dipole magnet with a central field of 0.5 T and the homogeneity of 5% within a 1 m long, 1.2 m wide, and 0.9 m high aperture. Detectors will be installed within this aperture. An innovative design for the superconducting detector magnet is proposed that goes beyond the conventional approach. The magnet is designed as a coil-dominant type, with conductors discretized on a racetrack-shaped cross-section to generate the necessary fields. A warm iron yoke is used to enhance the central field and minimize the stray field. The magnet has overall dimensions of 3.4 meters in length, 2.7 meters in height, and 4.3 meters in width. The coils will be wound using a 19-strand rope cable comprised of 12 NbTi superconducting wires and 7 copper wires. The ratio of copper to superconductor of the cable is 6.9. The keel supports serve as the primary structural support for the coils to withstand the electromagnetic force. The coils will be indirectly cooled by liquid helium within three external helium vessels. To ensure reliable protection of the magnet during a quench, an active protection method combined with quench-back effect is employed. In this paper, we mainly present the detailed design of the magnetic field, structure, quench protection and cryostat for the spectrometer magnet.
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为 CEE 光谱仪设计大型超导偶极磁体
中船重工外部目标实验(CEE)是兰州重离子研究装置(HIRFL)正在建设的大型光谱仪,用于研究高重子密度下核物质的相结构和超饱和密度下核物质的状态方程。其中一个关键部件是一个大型接受偶极子磁体,其中心磁场为 0.5 T,在 1 m 长、1.2 m 宽、0.9 m 高的孔径内均匀度为 5%。探测器将安装在这个孔径内。超导探测器磁体的创新设计超越了传统方法。磁体设计为线圈主导型,导体分散在赛道型横截面上,以产生必要的磁场。暖铁轭用于增强中心磁场和最小化杂散磁场。磁体总长度为 3.4 米,高度为 2.7 米,宽度为 4.3 米。线圈将使用 19 股绳缆绕制,绳缆由 12 根铌钛超导线和 7 根铜线组成。电缆中铜与超导体的比例为 6.9。缆索支撑是线圈承受电磁力的主要结构支撑。线圈将由三个外部氦容器中的液氦间接冷却。为了确保在淬火过程中对磁体进行可靠的保护,我们采用了一种结合淬火后效应的主动保护方法。本文主要介绍了光谱仪磁体的磁场、结构、淬火保护和晶体管的详细设计。
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