Start-up and early results from Alcator C-MOD

S. Fairfax
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引用次数: 2

Abstract

Alcator C-MOD is a compact, high performance tokamak designed to address reactor-relevant issues including diverter operation, confinement, and auxiliary heating. It incorporates flexible shaping of non-circular, diverted plasmas, strong ICRF heating, and many innovative engineering features to achieve high performance in a compact device with modest cost. Like its predecessors, Alcator A and Alcator C, Alcator C-MOD uses cryogenically cooled copper magnets to produce high toroidal fields (9 Tesla at 0.67 m) and strong ohmic heating (up to 3 MA.) The thick wall of the vacuum vessel, while complicating the normal problems of plasma initiation and control, are relevant to virtually all next-generation designs. The facility operated briefly in late 1991 and again in early 1992, when a terminal failed on one of the PF magnets. The experiment resumed operations in May 1993. This report describes the start-up and early operational experience, comparing with both design scenarios and previous experience on Alcator A and C. Results from operations during the summer of 1993 are presented.
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Alcator C-MOD的启动和早期结果
Alcator C-MOD是一种紧凑、高性能的托卡马克,旨在解决反应堆相关问题,包括分流器操作、约束和辅助加热。它结合了非圆形、偏转等离子体的灵活成形、强ICRF加热和许多创新的工程特征,以适度的成本在紧凑的设备中实现高性能。与其前身Alcator A和Alcator C一样,Alcator C- mod使用低温冷却的铜磁体产生高环形磁场(0.67 m时9特斯拉)和强欧姆加热(高达3 MA)。真空容器的厚壁虽然使等离子体产生和控制的正常问题复杂化,但实际上与所有下一代设计相关。该设施在1991年底和1992年初短暂运行,当时一个PF磁铁的终端发生故障。实验于1993年5月恢复运作。本报告叙述了启动和早期操作的经验,并与设计方案和以前在alcatator A和c上的经验进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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