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首页> 外文期刊>Plasma Science & Technology >Stress and thermal analysis of the in-vessel resonant magnetic perturbation coils on the J-TEXT tokamak
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Stress and thermal analysis of the in-vessel resonant magnetic perturbation coils on the J-TEXT tokamak

机译:J-TEXT托卡马克上的船内共振磁扰动线圈的应力和热分析

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摘要

A set of four in-vessel saddle coils was designed to generate a helical field on the J-TEXT tokamak to study the influences of the external perturbation field on plasma. The coils are fed with alternating current up to 10 kA at frequency up to 10 kHz. Due to the special structure, complex thermal environment and limited space in the vacuum chamber, it is very important to make sure that the coils will not be damaged when undergoing the huge electromagnetic forces in the strong toroidal field, and that their temperatures don't rise too much and destroy the insulation. A 3D finite element model is developed in this paper using the ANSYS code, stresses are analyzed to find the worst condition, and a mounting method is then established. The results of the stress and modal analyses show that the mounting method meets the strength requirements. Finally, a thermal analysis is performed to study the cooling process and the temperature distribution of the coils.
机译:设计了一组四个船上鞍形线圈,以在J-TEXT托卡马克上产生一个螺旋场,以研究外部扰动场对等离子体的影响。线圈以高达10 kHz的频率馈入高达10 kA的交流电。由于特殊的结构,复杂的热环境以及真空室中有限的空间,确保线圈在强环形场中经受巨大的电磁力时不会损坏,并且温度不会受到损坏,这一点非常重要。上升太多并破坏绝缘。本文使用ANSYS代码开发了一个3D有限元模型,分析了应力以找到最坏的条件,然后建立了安装方法。应力和模态分析的结果表明,该安装方法符合强度要求。最后,进行热分析以研究线圈的冷却过程和温度分布。

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