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Thermal, electrical and mechanical response in Nb3Sn superconducting coils

机译:Nb3Sn超导线圈中的热,电和机械响应

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During a quench, significant temperatures can arise as a magnet's stored energy is dissipated in the normal zone. Temperature gradients during this process give rise to localized strains within the coil. Reactive forces in the magnet structure balance the electromagnetic and thermal forces and maintain on equilibrium. In this paper we present a complete 3D finite element analysis of a racetrack coil. Specifically, the analysis focuses on thermal, electrical and mechanical conditions in a 10 T Nb3Sn coil built and tested as part of LBNL's Subscale Magnet Program. The study attempts to simulate time history of the temperature and voltage rise during quench propagation. The transient thermal stress after the quench is then evaluated and discussed.
机译:在淬火期间,由于磁体的存储能量在正常区域中耗散,因此会产生明显的温度。在此过程中,温度梯度会在线圈内产生局部应变。磁体结构中的反作用力使电磁力和热力保持平衡,并保持平衡。在本文中,我们介绍了跑道线圈的完整3D有限元分析。具体来说,该分析着重于10磅Nb3Sn线圈中的热,电气和机械条件,该线圈是LBNL次级磁计划的一部分,并进行了测试。该研究试图模拟淬火传播过程中温度和电压上升的时间历史。然后评估并讨论了淬火后的瞬态热应力。

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