3-D Modeling of AC Loss in D-Shaped HTS Coils Using Hand T -A Formulation-Based Finite Element Methods

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY(2024)

引用 0|浏览2
暂无评分
摘要
The D-shaped coil is employed in the design of the hybrid toroidal magnet for 10 MJ high-temperature super conducting magnetic energy storage (HTS-SMES) to mitigate the huge bending moment on the coil. During the power compensation process of the SMES system, the time-varying currents induce ac losses within the magnet, leading to heating and temperature rise. Excessive temperature rise can result in the magnet experiencing a quench or even damage. Therefore, accurately calculating the ac losses generated by the magnet for HTS-SMES is crucial for the stable operation of the system. Generally, 2-D models cannot accurately simulate the complex geometric shapes of superconducting coils with non-axisymmetric properties. This article applies the H-formulation and T-A formulation and their homogeneous method to the 3-Dfinite element method (FEM) models of a D-shaped double-pancake coil (DPC). The effectiveness of the established 3-D FEM models has been verified through ac loss measurement experiments on a D-shaped HTS DPC at 77 K temperature. The application strategies of T-A full, T-A homogenization, and H homogenization in the 3-D FEM models have been comprehensively compared under different sizes of D-shaped HTS DPCs. Subsequently, the distribution characteristics of ac losses in a D-shaped DPC have been analyzed. The research findings reveal that the distribution of ac losses exhibits nonuniformity along the arc direction of the coil. The difference between the maximum and minimum values in this coil is approximately 15.1% in the H homogeneous model and14.0% in the T-A homogeneous model. This work holds significant guidance for the computational assessment of ac losses in the hybrid toroidal magnet for 10 MJ HTS-SMES..
更多
查看译文
关键词
Superconducting magnets,Superconducting magnetic energy storage,Toroidal magnetic fields,Magnetic domains,Finite element analysis,High-temperature superconductors,Magnetic flux,AC loss simulation,homogenization method,3-D finite element method (FEM),H formulation,T-A formulation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要