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Modeling of Quench Protection Concepts for Canted-Cosine-Theta Type High-Field Magnets

机译:倾斜舒适型高场磁铁淬火保护概念的建模

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An innovative high-field superconducting magnet of Canted-Cosine-Theta (CCT) type has been proposed for Future Circular Collider 16 T dipole magnet design. The unique mechanical structure intercepts the accumulated forces lowering the stress on the windings, constituting intrinsic stress management in high-field Nb3Sn accelerator magnets. However, this structure also constitutes a barrier for heat to quickly propagate in case of a quench. To succeed in the CCT-type magnet design and construction, quench protection is a challenging task that requires a detailed investigation of the electrothermal behavior of the magnet. In this paper, the protectability of a two-layer short model CD1 (Canted Dipole) built at PSI is studied using multiphysics simulations. Two protection methods are considered: energy extraction and coupling-loss induced quench. The 2D User-Defined Elements (UDEs) developed at Lawrence Berkeley National Laboratory in ANSYS Parametric Design Language, which support the multi-dependence material properties and include the effect of inter-filament coupling currents, are adapted and used in the coupled electrothermal, electrodynamic and electrical circuits calculations. A first-of-a-kind CCT-type magnet protection study using UDEs is presented. The generic model method will be validated through CD1 cold tests. Furthermore, these studies will prepare the ground for four-layer CCT protection concepts for FCC.
机译:已经提出了一种创新的倾斜 - 舒适度(CCT)类型的高场超导磁铁,用于未来的圆形撞机16t偶极磁铁设计。独特的机械结构拦截降低绕组应力的累积力,构成高场Nb3Sn加速器磁体中的固有应力管理。然而,这种结构也构成了在淬火的情况下快速传播的热量的屏障。为了成功,在CCT型磁铁设计和施工中,淬火保护是一个具有挑战性的任务,需要详细研究磁体的电热行为。本文采用多体仿真研究了在PSI下建立的双层短型CD1(倾斜偶极子)的可照度。考虑了两种保护方法:能量提取和耦合损耗诱导淬火。在劳伦斯伯克利国家实验室开发的2D用户定义的元素(UDES)在支持多依赖性材料特性并包括丝耦合电流的效果中,适用并在耦合电热,电动电动和电路计算。呈现了使用UDES的一类CCT型磁铁保护研究。通过CD1冷测试验证通用模型方法。此外,这些研究将为FCC制备四层CCT保护概念的地面。

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