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Structural analyses, sensitivity analyses, and independent confirmatory analyses of the IGNITOR magnet system

机译:IGNITOR磁铁系统的结构分析,灵敏度分析和独立的确认分析

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摘要

Ignitor has been the first experiment proposed and designed to reach ignition conditions in magnetically confined plasmas. It is a compact, high field machine based on the physics developed primarily by the Alcator series of experiments. Each refinement of IGNITOR has drawn from a common set of "tools": Bitter plate copper magnets; bucking/wedging interactions of the CS and TF coils; and passive and active preload mechanisms to offset vertical tension in the inner leg and tension in the horizontal leg. Elements of the IGNITOR design are statically indeterminant. Examples of multiply redundant load paths used in other reactor designs are cited. Despite a large body of historical work confirming the structural feasibility of IGNITOR, if still is erroneously perceived as more challenging than other tokamak designs. Past US analyses are recalled: US contributions from independently derived models are described and are compared with the latest IGNITOR project analyses. Differences in modeling philosophy are presented, and results are compared. Recent US analyses employ non-linear path dependent friction of a 2 coil segment. Sensitivity studies of fit-up tolerances and, uncertainties in material properties are presented. While there are some small differences in results, these analyses independently confirm the benefits of the major structural elements used in IGNITOR.
机译:点火器是第一个提出并设计用于在磁约束等离子体中达到点火条件的实验。这是一款基于Alcator系列实验开发的物理原理的紧凑型高磁场机器。 IGNITOR的每个改进都来自一组通用的“工具”:苦味盘铜磁铁; CS和TF线圈的屈曲/楔形相互作用;被动和主动预紧机构可抵消内腿的垂直拉力和水平腿的拉力。 IGNITOR设计的要素是静态的不确定因素。引用了其他反应堆设计中使用的多个冗余负载路径的示例。尽管有大量的历史工作证实了IGNITOR在结构上的可行性,但如果仍然错误地认为它比其他托卡马克设计更具挑战性。回顾过去的美国分析:描述了来自独立衍生模型的美国贡献,并将其与最新的IGNITOR项目分析进行了比较。提出了建模原理上的差异,并比较了结果。最近的美国分析采用2线圈段的非线性路径相关摩擦。提出了适合公差和材料性能不确定性的敏感性研究。尽管结果略有不同,但这些分析独立地确认了IGNITOR中使用的主要结构元件的好处。

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