Eigenmode analysis of the ITER ICRF antenna plug and electrical solution to the grounding of the antenna

被引:16
|
作者
Louche, F. [1 ]
Messiaen, A. [1 ]
Dumortier, P. [1 ]
Durodie, F. [1 ]
Koch, R. [1 ]
Lamalle, P. [1 ]
机构
[1] Ecole Royale Mil, Plasma Phys Lab, B-1000 Brussels, Belgium
关键词
TEXTOR;
D O I
10.1088/0029-5515/49/6/065025
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
The excitation of non-TEM modes around the ITER ICRF (ion cyclotron range of frequency) antenna plug can considerably increase the level of RF currents and voltages on the ITER plug. We report on a study of these modes and a solution to avoid them in the ITER ion cyclotron range of frequencies. From a transmission line approach we show that resonances can be avoided if the distance between the mouth of the line and an added short-circuit is sufficiently small. We therefore propose to position short-circuits at about 1m from the antenna mouth, constituted by rows of closely spaced non-capacitive contacts all around the plug. These conclusions are further validated with Microwave Studio (R) simulations. Asimplified model of the ITER ICRF array is used for comparing various grounding solutions and it is proved that the solution already inferred from transmission line approximation suppresses the resonances from the frequency domain relevant for ICRH in ITER. The MWS calculations predict that the proposed solution also avoids large RF currents in the blanket modules and in their connectors. Their amplitude barely exceeds 5% of the strap RF currents. This solution avoids perturbation of the antenna array impedance matrix by the coaxial gap. We also discuss resonances appearing at harmonic frequencies which could be excited by various non-linear effects due to the plasma or the generator. This kind of excitation should not lead to large voltage build-up.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Eigenmode analysis of the ITER ICRF antenna plug and electrical solution to the grounding of the antenna
    Louche, F.
    Messiaen, A. M.
    Dumortier, P.
    Durodie, F.
    Koch, R.
    Lamalle, P. U.
    RADIO FREQUENCY POWER IN PLASMAS, 2009, 1187 : 289 - +
  • [2] Further Studies on the ITER ICRF Antenna Grounding
    Dumortier, P.
    Durodie, F.
    Louche, F.
    Vervier, M.
    Ksivska, A.
    Messiaen, A.
    Stepanov, I
    23RD TOPICAL CONFERENCE ON RADIOFREQUENCY POWER IN PLASMAS, 2020, 2254
  • [3] Detailed Modeling of Grounding Solutions for the ITER ICRF Antenna
    Kyrytsya, V.
    Dumortier, P.
    Messiaen, A.
    Louche, F.
    Durodie, F.
    RADIO FREQUENCY POWER IN PLASMAS: PROCEEDINGS OF THE 19TH TOPICAL CONFERENCE, 2011, 1406
  • [4] Performance of the ITER ICRF Antenna plug as expected from TOPICA matrices
    Messiaen, A.
    Koch, R.
    Dumortier, P.
    Louche, F.
    Maggiora, R.
    Milanesio, D.
    Weynants, R.
    RADIO FREQUENCY POWER IN PLASMAS, 2009, 1187 : 269 - +
  • [5] Design of the ITER ICRF Antenna
    Hancock, D.
    Nightingale, M.
    Bamber, R.
    Dalton, N.
    Durodie, F.
    Firdaouss, M.
    Lister, J.
    Porton, M.
    Shannon, M.
    Wilson, D.
    Winkler, K.
    Wooldridge, E.
    RADIO FREQUENCY POWER IN PLASMAS: PROCEEDINGS OF THE 19TH TOPICAL CONFERENCE, 2011, 1406
  • [6] Optimization of the Layout of the ITER ICRF Antenna Port Plug and its Performance Assessment
    Vrancken, M.
    Durodie, F.
    Dumortier, P.
    Lockley, D.
    Louche, F.
    Messiaen, A.
    Maggiora, R.
    Milanesio, D.
    Nightingale, M. P. S.
    Tigwell, P.
    Van Schoor, M.
    Wilson, D.
    RADIO FREQUENCY POWER IN PLASMAS: PROCEEDINGS OF THE 19TH TOPICAL CONFERENCE, 2011, 1406
  • [7] RF optimisation of the port plug layout and performance assessment of the ITER ICRF antenna
    Vrancken, M.
    Durodie, F.
    Bamber, R.
    Dalton, N.
    Dumortier, P.
    Graham, M.
    Horvat, A.
    Hancock, D.
    Lockley, D.
    Louche, F.
    Maggiora, R.
    Messiaen, A.
    Milanesio, D.
    Nightingale, M. P. S.
    Shannon, M.
    Tigwell, P.
    Van Schoor, M.
    Wilson, D.
    Winkler, K.
    Team, Cycle
    FUSION ENGINEERING AND DESIGN, 2013, 88 (6-8) : 940 - 944
  • [8] Performance Assessment of the ITER ICRF Antenna
    Durodie, F.
    Vrancken, M.
    Bamber, R.
    Colas, L.
    Dumortier, P.
    Hancock, D.
    Huygen, S.
    Lockley, D.
    Louche, F.
    Maggiora, R.
    Milanesio, D.
    Messiaen, A.
    Nightingale, M. P. S.
    Shannon, M.
    Tigwell, P.
    Van Schoor, M.
    Wilson, D.
    Winkler, K.
    RADIOFREQUENCY POWER IN PLASMAS, 2014, 1580 : 362 - 365
  • [9] Overview on Experiments On ITER-like Antenna On JET And ICRF Antenna Design For ITER
    Nightingale, M. P. S.
    Durodie, F.
    Argouarch, A.
    Beaumont, B.
    Becoulet, A.
    Bernard, J-M
    Blackman, T.
    Caughman, J.
    Dumortier, P.
    Edwards, D.
    Fanthome, J.
    Gassman, T.
    Goulding, R.
    Graham, M.
    Hamlyn-Harris, C.
    Hancock, D.
    Huygen, S.
    Jacquet, P.
    Kazarian, F.
    Koch, R.
    Lamalle, P. U.
    Lerche, E.
    Louche, F.
    Maggiora, R.
    Mayoral, M-L.
    Messiaen, A. M.
    Milanesio, D.
    Monakhov, I.
    Mukherjee, A.
    Nicholls, K.
    Noterdaeme, J-M.
    Ongena, J.
    Rasmussen, D.
    Rimini, F.
    Sartori, R.
    Stork, D.
    Van Eester, D.
    Vervier, M.
    Vrancken, M.
    Vulliez, K.
    Whitehurst, A.
    Wilson, D.
    Wooldridge, E.
    RADIO FREQUENCY POWER IN PLASMAS, 2009, 1187 : 213 - +
  • [10] ITER ICRF antenna analysis and optimization using the TOPICA code
    Milanesio, D.
    Maggiora, R.
    NUCLEAR FUSION, 2010, 50 (02)