R&D progress of the high power negative ion accelerator for the ITER NB system at JAEA

被引:24
作者
Kashiwagi, M. [1 ]
Taniguchi, M. [1 ]
Dairaku, M. [1 ]
de Esch, H. P. L. [2 ]
Grisham, L. R. [3 ]
Svensson, L. [2 ]
Tobari, H. [1 ]
Umeda, N. [1 ]
Watanabe, K. [1 ]
Sakamoto, K. [1 ]
Inoue, T. [1 ]
机构
[1] Japan Atom Energy Agcy, Naka, Ibaraki 3110193, Japan
[2] CEA Cadarache, F-13108 St Paul Les Durance, France
[3] Princeton Univ, Plasma Phys Lab, Princeton, NJ 08543 USA
关键词
APERTURE DISPLACEMENT; DESIGN; JT-60U;
D O I
10.1088/0029-5515/49/6/065008
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
At JAEA, as the Japan Domestic Agency (JADA) for ITER, a MAMuG (multi-aperture multi-grid) accelerator has been developed to perform the required R&D for the ITER neutral beam (NB) system. As a result of countermeasures to handle excess heat load to the ion source by backstreaming positive ions, H-ion beam current was increased to 0.32A (the ion current density of 140 A m(-2)) at a beam energy of 796 keV. This high power beam acceleration simulated the ITER operation condition maintaining the perveance (H(-) ion current density/beam energy(3/2)) of the ITER accelerator. After the high power beam operation, the pulse length was successfully extended from 0.2 to 5 s at 550 keV, which yielded a 131 mA H(-) ion beam as an initial test of the long pulse operation. A test of a single-aperture single-gap (SINGAP) accelerator was performed at JAEA under an ITER R&D task agreement. The objective of this test was to compare two different accelerator concepts (SINGAP and MAMuG) at the same test facility. As a result, the MAMuG accelerator was defined as the baseline design for ITER, due to advantages in its better voltage holding and less electron acceleration. In three-dimensional beam trajectory analyses, the aperture offset at the bottom of the extractor was found to be effective for compensation of beamlet deflection due to their own space charge. It has been analytically demonstrated that these compensated beamlets can be focused at a focal point by adopting the aperture offset at the final grid of the accelerator.
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页数:7
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共 29 条
  • [1] [Anonymous], OPERA 3D
  • [2] Updated physics design ITER-SINGAP accelerator
    de Esch, HPL
    Hemsworth, RS
    Massmann, P
    [J]. FUSION ENGINEERING AND DESIGN, 2005, 73 (2-4) : 329 - 341
  • [3] DEESCH HP, 2009, FUSION ENG IN PRESS
  • [4] Modeling of secondary emission processes in the negative ion based electrostatic accelerator of the International Thermonuclear Experimental Reactor
    Fubiani, G.
    de Esch, H. P. L.
    Simonin, A.
    Hemsworth, R. S.
    [J]. PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS, 2008, 11 (01):
  • [5] FUBIANI G, PHYS REV ST AC UNPUB
  • [6] Beamlet-beamlet interaction in a multi-aperture negative ion source
    Fujiwara, Y
    Hanada, M
    Okumura, Y
    Watanabe, K
    Kawai, K
    [J]. REVIEW OF SCIENTIFIC INSTRUMENTS, 2000, 71 (08) : 3059 - 3064
  • [7] ION BEAMLET STEERING BY APERTURE DISPLACEMENT FOR A TETRODE ACCELERATING STRUCTURE
    GARDNER, WL
    KIM, J
    MENON, MM
    WHEALTON, JH
    [J]. REVIEW OF SCIENTIFIC INSTRUMENTS, 1978, 49 (08) : 1214 - 1215
  • [8] Present status of the negative ion based NBI system for long pulse operation on JT-60U
    Ikeda, Y.
    Umeda, N.
    Akino, N.
    Ebisawa, N.
    Grisham, L.
    Hanada, M.
    Honda, A.
    Inoue, T.
    Kawai, M.
    Kazawa, M.
    Kikuchi, K.
    Komata, M.
    Mogaki, K.
    Noto, K.
    Okano, F.
    Ohga, T.
    Oshima, K.
    Takenouchi, T.
    Tanai, Y.
    Usui, K.
    Yamazaki, H.
    Yamamoto, T.
    [J]. NUCLEAR FUSION, 2006, 46 (06) : S211 - S219
  • [9] 1 MeV, ampere class accelerator R&D for ITER
    Inoue, T
    Kashiwagi, M
    Taniguchi, M
    Dairaku, M
    Hanada, M
    Watanabe, K
    Sakamoto, K
    [J]. NUCLEAR FUSION, 2006, 46 (06) : S379 - S385
  • [10] Design of neutral beam system for ITER-FEAT
    Inoue, T
    Di Pietro, E
    Hanada, M
    Hemsworth, RS
    Krylov, A
    Kulygin, V
    Massmann, P
    Mondino, PL
    Okumura, Y
    Panasenkov, A
    Speth, E
    Watanabe, K
    [J]. FUSION ENGINEERING AND DESIGN, 2001, 56-57 : 517 - 521