电磁线圈
磁铁
托卡马克
电磁场
电感
超导磁体
机械
有限元法
环面
物理
瞬态(计算机编程)
磁场
核磁共振
数值分析
材料科学
电流(流体)
电磁脉冲
电磁铁
涡流
聚变能
领域(数学)
机械工程
电气工程
计算机模拟
作者
Dong Wei,Sijian Wang,Shouhong Shan,Huadong Yong,Benzhe Zhou,Jianhua Liu
摘要
In the current emerging research of compact tokamak devices, it is important to study the electromagnetic response of D-shaped coils in the toroidal field (TF) magnet. In this paper, a numerical electromagnetic analysis of D-shaped coils for TF magnets in a fusion system is conducted, which focuses on no-insulation (NI) configuration. Utilizing a 3D finite element model with H-formulation, the electromagnetic behavior of the coil is investigated under varying charging rates, contact resistivity, and sudden discharge scenarios. The results reveal that NI coils exhibit significant charging delay effects due to radial current redistribution, with delay characteristics dependent on the charging rate and contact resistivity. AC loss analyses reveal that contact losses dominate at low contact resistance, while superconducting losses become negligible. The mutual inductance effects are also explored in nested D-shaped coil systems, showing that outer coil suddenly discharges induce transient perturbations in the internal coil, thereby threatening system stability. Furthermore, the electromagnetic characteristics of the complete TF magnet system are analyzed. These findings provide insights into optimizing TF magnet designs for compact tokamaks.
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