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Thermal–Hydraulic Analysis of a Model Coil for 40-T Hybrid Magnet Superconducting Outsert

机译:40T混合磁体超导插口模型线圈的热工水力分析

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A thermal-hydraulic performance analysis of a model coil for a 40-T hybrid magnet superconducting outsert being built at the High Magnetic Field Laboratory, Chinese Academy of Sciences, was performed. The model coil was wound with a cable-in-conduit conductor cabled in a 316LN jacket cooled with supercritical helium. The model coil, in combination with 7.5-T NbTi solenoid coils, will be capable of generating a 12-T central field. Only one cooling channel was used to cool the model coil due to its short length. Both the temperature margin associated with a given scenario and the quench propagation following an artificial disturbance are discussed. The thermal-hydraulic analysis of the temperature margin showed that there is a sufficient minimum temperature margin for 100-A/s current ramp rate under a 7.5-T background magnetic field. The quench analysis showed that the hot-spot temperature of the cable is about 60 K, which is less than the maximum allowable value of 150 K for 0.7-s delay time. In addition, the convergence study was carried out for different time steps and space sizes.
机译:对在中国科学院高磁场实验室建立的40T混合磁体超导插座模型线圈的热工液压性能进行了分析。模型线圈用在316LN护套中电缆化的导管中导线缠绕,该护套用超临界氦冷却。模型线圈与7.5-T NbTi螺线管线圈结合将能够产生12-T中心磁场。由于模型线圈长度短,仅使用一个冷却通道来冷却模型线圈。既讨论了与给定场景相关的温度裕度,也讨论了人为干扰后的淬火传播。温度裕度的热工液压分析表明,在7.5T的背景磁场下,对于100A / s的电流斜坡速率,有足够的最小温度裕度。失超分析表明,电缆的热点温度约为60 K,这比延迟时间为0.7 s的最大允许值150 K小。此外,针对不同的时间步长和空间大小进行了收敛研究。

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