Vacuum Insulation and Achievement of 980 keV,185 A/m~2 H-Ion Beam Acceleration at JAEA for the ITER Neutral Beam Injector

被引:0
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作者
Hiroyuki TOBARI [1 ]
Masaki TANIGUCHI [1 ]
Mieko KASHIWAGI [1 ]
Masayuki DAIRAKU [1 ]
Naotaka UMEDA [1 ]
Haruhiko YAMANAKA [1 ]
Kazuki TSUCHIDA [1 ]
Jumpei TAKEMOTO [1 ]
Kazuhiro WATANABE [1 ]
Takashi INOUE [1 ]
Keishi SAKAMOTO [1 ]
机构
[1] Japan Atomic Energy Agency (JAEA),Mukouyama 801-1, Naka, Ibaraki 311-1093, Japan
关键词
neutral beam injector (NBI); negative ion beam; HV bushing; vacuum insu- lation;
D O I
暂无
中图分类号
TL64 [热核反应堆(聚变堆)];
学科分类号
082701 ;
摘要
Vacuum insulation of 1 MV is a common issue for the HV bushing and the accel- erator for the ITER neutral beam injector (NBI). The HV bushing as an insulating feedthrough has a five-stage structure and each stage consists of double-layered insulators. To sustain 1 MV in vacuum, reduction of electric field at several triple points existing around the double-layered insulators is a critical issue. To reduce electric field simultaneously at these points, three types of stress ring have been developed. In a voltage holding test of a full-scale mockup equipped with these stress rings, 120% of rated voltage was sustained and the voltage holding capability required in ITER was verified. In the MeV accelerator, whose target is the acceleration of a H ion beam of 1 MeV, 200 A/m 2 , the gap between the grid support was extended to suppress breakdowns triggered by electric field concentration at the edge and corner of the grid support. This modi- fication improved the voltage holding capability in vacuum, and the MeV accelerator succeeded in sustaining 1 MV stably. Furthermore, it appeared that the H ions beam was deflected and a part of the beam was intercepted at the acceleration grid. This causes high heat load on the grids and breakdowns during beam acceleration. To suppress the direct interception, a new grid was designed with proper aperture displacement based on a three dimensional beam trajectory analysis. As a result, 980 keV, 185 A/m 2 H ion beam acceleration has been demonstrated, which is close to the ITER requirement.
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页码:179 / 183
页数:5
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