论文标题
使用向后计算方法的现场冷却大型高温超导体的快速有效的临界状态建模
Fast and efficient critical state modelling of field-cooled bulk high-temperature superconductors using a backward computation method
论文作者
论文摘要
已经开发了一种向后的计算方法,以加速交错阵列的高温超导(HTS)下驱动器中临界状态磁化电流的建模。关键概念如下:i)在快速场冷却(FC)磁化后,首先在HTS块的表面上产生大磁化电流; ii)磁化电流然后逐步放松遵守临界状态模型的逐步放松; iii)几十个向后迭代后,磁化电流到达稳态。模拟结果显示了与H型方法的极好的一致性,用于电磁和机电耦合分析,但计算速度明显更快。用180万度的自由度(DOF)求解FEA模型,向后计算方法少于1.4小时,比其他最先进的数值方法更快或更高。最后,这些模型用于研究机械应力对临界状态磁化电流和沿中心轴的波动场的分布的影响。
A backward computation method has been developed to accelerate modelling of the critical state magnetization current in a staggered-array bulk high-temperature superconducting (HTS) undulator. The key concept is as follows: i) a large magnetization current is first generated on the surface of the HTS bulks after rapid field-cooling (FC) magnetization; ii) the magnetization current then relaxes inwards step-by-step obeying the critical state model; iii) after tens of backward iterations the magnetization current reaches a steady state. The simulation results show excellent agreement with the H-formulation method for both the electromagnetic and electromagnetic-mechanical coupled analyses, but with significantly faster computation speed. Solving the FEA model with 1.8 million degrees of freedom (DOFs), the backward computation method takes less than 1.4 hours, an order of magnitude or higher faster than other state-of-the-art numerical methods. Finally, the models are used to investigate the influence of the mechanical stress on the distribution of the critical state magnetization current and the undulator field along the central axis.