Three dimensional modelling of ICRF launchers for fusion devices

被引:43
|
作者
Carter, MD [1 ]
Rasmussen, DA [1 ]
Ryan, PM [1 ]
Hanson, GR [1 ]
Stallings, DC [1 ]
Batchelor, DB [1 ]
Bigelow, TS [1 ]
England, AC [1 ]
Hoffman, DJ [1 ]
Murakami, M [1 ]
Wang, CY [1 ]
Wilgen, JB [1 ]
Rogers, JH [1 ]
Wilson, JR [1 ]
Majeski, R [1 ]
Schilling, G [1 ]
机构
[1] PRINCETON UNIV,PRINCETON PLASMA PHYS LAB,PRINCETON,NJ 08543
关键词
D O I
10.1088/0029-5515/36/2/I08
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 three dimensional (3-D) nature of antennas for fusion applications in the ion cyclotron range of frequencies (ICRF) requires accurate modelling to design and analyse new antennas. In this article, analysis and design tools for radiofrequency (RF) antennas are successfully benchmarked with experiment, and the 3-D physics of the launched waves is explored. The systematic analysis combines measured density profiles from a reflectometer system, transmission line circuit modelling, detailed 3-D magnetostatics modelling and a new 3-D electromagnetic antenna model including plasma. This analysis gives very good agreement with measured loading data from the Tokamak Fusion Test Reactor (TFTR) Bay-M antenna, thus demonstrating the validity of the analysis for the design of new RF antennas. The 3-D modelling is contrasted with 2-D models, and significant deficiencies are found in the latter. The 2-D models are in error by as much as a factor of 2 in real and reactive loading, even after they are corrected for the most obvious 3-D effects. Three dimensional effects play the most significant role at low parallel wavenumbers, where the launched power spectrum can be quite different from the predictions of 2-D models. Three dimensional effects should not be ignored for many RF designs, especially those intended for fast wave current drive.
引用
收藏
页码:209 / 223
页数:15
相关论文
共 50 条
  • [21] Probing the plasma near high power wave launchers in fusion devices for static and dynamic electric fields (invited)
    Klepper, C. C.
    Martin, E. H.
    Isler, R. C.
    Colas, L.
    Goniche, M.
    Hillairet, J.
    Panayotis, S.
    Pegourie, B.
    Jacquot, J.
    Lotte, Ph.
    Colledani, G.
    Biewer, T. M.
    Caughman, J. B.
    Ekedahl, A.
    Green, D. L.
    Harris, J. H.
    Hillis, D. L.
    Shannon, S. C.
    Litaudon, X.
    [J]. REVIEW OF SCIENTIFIC INSTRUMENTS, 2014, 85 (11):
  • [22] Recent developments in ICRF antenna modelling
    Lamalle, P. U.
    Messiaen, A. M.
    Dumortier, P.
    Louche, F.
    [J]. NUCLEAR FUSION, 2006, 46 (04) : 432 - 443
  • [23] THREE DIMENSIONAL MODELLING OF THE PEACH IN MAPLE
    Barton, Stanislav
    [J]. PROGRAMS AND ALGORITHMS OF NUMERICAL MATHEMATICS 14, 2008, : 7 - 14
  • [24] Three dimensional modelling in the engine room
    [J]. Douthwaite, C., 1600, (05):
  • [25] Modelling of Three-Dimensional Nanographene
    Mathioudakis, Christos
    Kelires, Pantelis C.
    [J]. NANOSCALE RESEARCH LETTERS, 2016, 11
  • [26] Modelling of Three-Dimensional Nanographene
    Christos Mathioudakis
    Pantelis C. Kelires
    [J]. Nanoscale Research Letters, 2016, 11
  • [27] Three-dimensional modelling of intergranular fatigue failure of fine grain polycrystalline metallic MEMS devices
    Bomidi, J. A. R.
    Weinzapfel, N.
    Sadeghi, F.
    [J]. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2012, 35 (11) : 1007 - 1021
  • [28] Three-dimensional self-consistent modelling of spin-qubit quantum dot devices
    Melnikov, DV
    Kim, J
    Zhang, LX
    Leburton, JP
    [J]. IEE PROCEEDINGS-CIRCUITS DEVICES AND SYSTEMS, 2005, 152 (04): : 377 - 384
  • [29] Characterizations and First Plasma Operation of the WEST Load-resilient Actively Cooled ICRF Launchers
    Helou, W.
    Durodie, F.
    Hillairet, J.
    Lerche, E.
    Lombard, G.
    Milanesio, D.
    Mollard, P.
    Bernard, J-M
    Charabot, N.
    Clairet, F.
    Colas, L.
    Moudden, Y.
    Santraine, B.
    Song, Y. T.
    Urbanczyk, G.
    Volpe, R.
    Wang, Y. S.
    Yang, Q. X.
    Bobkov, V
    [J]. 23RD TOPICAL CONFERENCE ON RADIOFREQUENCY POWER IN PLASMAS, 2020, 2254
  • [30] Three-dimensional electromagnetic modeling of the ITER ICRF antenna - (External matching design)
    Louche, F
    Lamalle, PU
    Dumortier, P
    Messiaen, AM
    [J]. Radio Frequency Power in Plasmas, 2005, 787 : 190 - 193