On suitable experiments for demonstrating the feasibility of the beam-driven plasma neutraliser for neutral beam injectors for fusion reactors

被引:5
|
作者
Starnella, G. [1 ]
Hopf, C. [1 ]
Maya, P. N. [2 ]
机构
[1] Max Planck Inst Plasma Phys, Boltzmann Str 2, D-85748 Garching, Germany
[2] Inst Plasma Res, Bhat 382428, Gandhinagar, India
关键词
DEMO; NBI; plasma neutraliser; BDPN; CROSS-SECTIONS; ION-SOURCE; COLLISIONS; ELECTRON; ENERGY; HYDROGEN; TEMPERATURE; H-2(+);
D O I
10.1088/1741-4326/ac5f18
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
Plasma neutralisers promise increased neutralisation efficiency of negative ion beams in neutral beam injection (NBI) beamlines compared with gas neutralisers. It has been suggested that, in the presence of an electron-confining magnetic cusp field along all neutraliser walls, the beam itself could ionise the neutraliser gas sufficiently to take advantage of this effect, avoiding the added complexity of external power coupling to the neutraliser. These predictions come from a zero-dimensional model by Surrey and Holmes (2013 AIP Conf. Proc. 1515 532) and Turner and Holmes (2019 Fusion Eng. Des. 149 111327). We have revisited and modified this model by introducing slowing-down energy distributions for stripped and Rudd electrons, including electron impact dissociation as an electron energy loss channel and taking into account dissociative recombination of molecular ions with electrons. Including the latter effect reduces the predicted plasma density by about a factor of four and the achievable neutralisation yield from similar to 80% to 68% in the case of a negative deuterium ion beam with an energy of 1 MeV and a current of 40 A. With this revised model we estimate the expected performance of potential beam-driven plasma neutralisers (BDPN) on a variety of existing negative ion beam test facilities for NBI. Based on these results, we conclude that the most suitable proof-of-principle experiment would be a dedicated chamber, ideally of the same dimensions and with the same magnetic cusp configuration as a BDPN for the DEMO NBI, in which the plasma is not created primarily by the fast electrons stripped from the beam ions, but by electrons of similar current and energy emitted from biased filaments.
引用
收藏
页数:21
相关论文
共 50 条
  • [1] Design of a Plasma neutraliser for a Fusion reactor or as an upgrade to the ITER heating neutral beam injectors
    Hemsworth, R. S.
    Veltri, P.
    [J]. FUSION ENGINEERING AND DESIGN, 2024, 202
  • [2] Diagnostic neutral beam injectors for large plasma physics experiments
    Ivanov, AA
    Abdrashitov, GF
    Belkin, VS
    Gorbovsky, AI
    Davydenko, VI
    Deichuli, PP
    Dranichnikov, AN
    Kapitonov, VA
    Kremyansky, VY
    Mishagin, VV
    Podminogin, AA
    Savkin, VY
    Shikhovtsev, IV
    Stupishin, NV
    Sitnikov, AV
    Medvedko, AS
    Evtushenko, YA
    Kolmogorov, VV
    Averbuch, II
    Uhlemann, R
    [J]. FUSION TECHNOLOGY, 1999, 35 (1T): : 180 - 184
  • [3] Model for a beam driven plasma neutraliser based on ITER beam geometry
    Turner, I
    Holmes, A. J. T.
    [J]. FUSION ENGINEERING AND DESIGN, 2019, 149
  • [4] BEAM-DRIVEN CURRENT IN PDX - VARIATION WITH PLASMA AND NEUTRAL INJECTION PARAMETERS
    SINGER, CE
    HOVEY, J
    JASSBY, DL
    [J]. BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1978, 23 (07): : 797 - 797
  • [5] Theory of a beam-driven plasma antenna
    Timofeev, I. V.
    Volchok, E. P.
    Annenkov, V. V.
    [J]. PHYSICS OF PLASMAS, 2016, 23 (08)
  • [6] Microwave beam-driven sail flight experiments
    Benford, J
    Benford, G
    Goodfellow, K
    Perez, R
    Harris, H
    Knowles, T
    [J]. SPACE TECHNOLOGY AND APPLICATIONS INTERNATIONAL FORUM-2001, 2001, 552 : 540 - 545
  • [7] Effect of plasma rotation on the beam-driven current
    Cottrell, G. A.
    Kemp, R.
    [J]. NUCLEAR FUSION, 2009, 49 (04)
  • [8] Stable witness-beam formation in a beam-driven plasma cathode
    Knetsch, A.
    Sheeran, B.
    Boulton, L.
    Niknejadi, P.
    Poder, K.
    Schaper, L.
    Zeng, M.
    Bohlen, S.
    Boyle, G.
    Brummer, T.
    Chappell, J.
    D'Arcy, R.
    Diederichs, S.
    Foster, B.
    Garland, M. J.
    Caminal, P. Gonzalez
    Hidding, B.
    Libov, V.
    Lindstrom, C. A.
    de la Ossa, A. Martinez
    Meisel, M.
    Parikh, T.
    Schmidt, B.
    Schroder, S.
    Tauscher, G.
    Wesch, S.
    Winkler, P.
    Wood, J. C.
    Osterhoff, J.
    [J]. PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2021, 24 (10)
  • [9] BEAM-PLASMA NEUTRON SOURCES BASED ON BEAM-DRIVEN MIRROR
    COENSGEN, FH
    CASPER, TA
    CORRELL, DL
    DAMM, CC
    FUTCH, AH
    LOGAN, BG
    MOLVIK, AW
    WALTER, CE
    [J]. JOURNAL OF FUSION ENERGY, 1989, 8 (3-4) : 237 - 247
  • [10] OPTIMIZATION OF STEADY-STATE BEAM-DRIVEN TOKAMAK REACTORS
    MIKKELSEN, DR
    SINGER, CE
    [J]. NUCLEAR TECHNOLOGY-FUSION, 1983, 4 (02): : 237 - 252