西班牙仿星器TJ-II的工程方面和现状

A. Navarro, L. Almoguera, J. Alonso Gozalo, J. Alonso Candenas, M. Blaumoser, J. Botija, A. García, M. Liniers, A. Martínez, M. Medrano
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引用次数: 3

摘要

TJ-II是一个中等大小的仿星器,(R/sub 0/ = 1.5 m;= 0.2;B/下标t/= 1t)在CIEMAT施工。它将允许在0.2到1秒的放电中探索宽范围的螺旋磁轴等离子体(旋转变换范围从0.8到2.5,磁阱高达6%,剪切高达10%),由ECH(电子回旋加热)(400 kW, 53.2 GHz)产生和加热。该配置的< beta >极限,理论上预测高达6%,将通过增加4mw的NBI来探索。提出了该装置的设计准则,并针对不同的元件提出了相应的解决方案。真空容器的模块化结构,可拆分的环形场线圈,以及每个元件的独立支撑结构,以及详细的组装程序,允许独立和平行构建不同的组件。在两个最复杂的组件,真空容器和中央线圈的设计中,对公差,形状和电流密度的严格要求得到了仔细的处理和解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering aspects and present status of the Spanish stellarator TJ-II
TJ-II is a medium-size stellarator, (R/sub 0/ = 1.5 m; =0.2 m; B/sub t/=1 T) under construction at CIEMAT. It will allow the exploration of helical magnetic axis plasmas in a wide range af' configurations (rotational transform ranges from 0.8 to 2.5, magnetic well up to 6%, and shear up to 10%) in discharges of 0.2 to 1 s, generated and heated by ECH (electron cyclotron heating) (400 kW at 53.2 GHz). < beta > limits of the configuration, theoretically predicted to be as high as 6%, will be explored by the addition of 4 MW of NBI. The design criteria for this device and the solutions adopted for the different components are presented. Modular structure for the vacuum vessel, splittable toroidal field coils, and an independent support structure for each element, together with a detailed assembly procedure, allow independent and parallel construction of the different components. Strict requirements on tolerances, shapes, and current densities have been carefully addressed and solved in the design of the two most complicated components, the vacuum vessel and the central coils.<>
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