Chrome Extension
WeChat Mini Program
Use on ChatGLM

Experimental Assessment and Model Validation of the SPARC Toroidal Field Model Coil

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY(2024)

MIT | Commonwealth Fus Syst

Cited 26|Views17
Abstract
In this article, the SPARC Toroidal Field Model Coil (TFMC) experimental tests are described. The tests include detailed comparisons to a hierarchy of electromagnetic and structural models of the coil. The tests confirm the ability of the no-insulation no-twist (NINT) configuration to provide highly stable dc operations with peak magnetic field in excess of 20 T at the rare earth yttrium barium copper oxide (REBCO) tape stacks. The advantages of the modular TFMC approach are validated including the ability to test and probe the REBCO and structural response of the coil in stages, a strategy that will be applied to large-scale coil production for SPARC. The electromagnetic models show high fidelity agreement to the dc and charging coil performance in terms of current distribution, voltages, and heating. The transient response of the TFMC to open-circuit events is examined. The coil exhibits the positive features of the NINT design with very low induced voltages and a predictable redistribution of current and resulting volumetric heating. However, highly localized damage occurs during a programmed open circuit at operational conditions similar to those used in the SPARC tokamak, in agreement with calibrated electromagnetic models. This reveals the cause and remedy to the thermal instability that gives rise to the damage. Therefore, the conclusion of the tests is that the NINT TFMC is confirmed as meeting the programmatic requirements for SPARC and, more generally, for high-field tokamaks.
More
Translated text
Key words
Superconducting magnets,Toroidal magnetic fields,Superconducting coils,Computational modeling,Superconducting films,Load modeling,Integrated circuit modeling,Electromagnets,fusion reactors,superconducting magnets,tokamaks
PDF
Bibtex
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Related Papers
J DELAUNAY, RL DOLECEK, RT WEBBER
1959

被引用41 | 浏览

Data Disclaimer
The page data are from open Internet sources, cooperative publishers and automatic analysis results through AI technology. We do not make any commitments and guarantees for the validity, accuracy, correctness, reliability, completeness and timeliness of the page data. If you have any questions, please contact us by email: report@aminer.cn
Chat Paper

要点】:本文通过实验评估和模型验证,证实了SPARC环形场模型线圈(TFMC)的无绝缘无扭曲(NINT)配置在REBCO带材堆叠中能提供高稳定性直流操作,并具有模块化设计的优势。

方法】:通过详细比较TFMC的电磁和结构模型,进行了一系列实验测试。

实验】:实验使用TFMC,验证了NINT配置在超过20 T的峰值磁场下能实现高度稳定的直流操作,实验结果与电磁模型高度一致,且在模拟开路事件中,TFMC表现出了NINT设计的优点,如低感应电压和可预测的电流重分布及体积加热。实验中REBCO带材在操作条件下的损坏与校准后的电磁模型相符,揭示了热不稳定性原因及解决方法。数据集名称未提及。