Overview and Status of Commissioning of the Wendelstein 7-X Magnet Power Supplies

被引:3
作者
Rummel, Thomas [1 ]
Moennich, Thomas [1 ]
Fuellenbach, Frank [1 ]
Murray, Tom [2 ]
机构
[1] Max Planck Inst Plasma Phys, D-17491 Greifswald, Germany
[2] Appl Power Syst Inc, Hicksville, NY 11801 USA
基金
欧盟地平线“2020”;
关键词
Power supplies; superconducting magnets; Wendelstein 7-X (W7-X); STELLARATOR;
D O I
10.1109/TPS.2016.2551938
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
There are three main magnet systems in Wendelstein 7-X (W7-X), comprising in total 85 coils arranged in 22 independent circuits fed by steady-state power supplies. The superconducting coil system creates the main magnetic field and consists of 70 coils, grouped in 7 electrical circuits with 10 coils each with an inductance of similar to 1 H. Each circuit is fed by one power supply with a maximum current of 20 kA and a maximum voltage of +/- 30 V. The second coil system is the so-called trim coil system, intended for enhanced experimental flexibility and error field corrections. It consists of five independently powered copper coils that are placed on the outer side of the cryostat. They will be operated with the currents of up to 1.95 kA. The full-scale ratings of a power supply are +/- 2200 A(dc) and +/- 230 V(dc). The third magnet system is the divertor control coil system. The ten normal conducting copper coils are situated inside the plasma vessel behind the divertor targets and are arranged in ten independent circuits. The current rating of one power supply is a dc current of up to +/- 2500 A, which can be modulated by an ac current of up to 625 A with the frequencies of up to 20 Hz. The commissioning of all the systems was made first by using dummy loads, and finally with the installed coils in W7-X. The final commissioning has been running since November 2014 and will be completed in Summer 2015.
引用
收藏
页码:1586 / 1591
页数:6
相关论文
共 50 条
  • [41] Repair processes of Wendelstein 7-X target modules
    Junghanns, P.
    Boscary, J.
    Ehrke, G.
    Mendelevitch, B.
    Pichlmair, A.
    Springer, J.
    Stadler, R.
    [J]. FUSION ENGINEERING AND DESIGN, 2019, 146 : 1166 - 1170
  • [42] FE simulation of the Wendelstein 7-X cryostat system
    Tereshchenko, A.
    Bykov, V.
    Schauer, F.
    Ye, M. Y.
    Weissflog, S.
    Andreeva, T.
    [J]. FUSION ENGINEERING AND DESIGN, 2009, 84 (7-11) : 1833 - 1837
  • [43] First divertor physics studies in Wendelstein 7-X
    Pedersen, T. Sunn
    Koenig, R.
    Jakubowski, M.
    Krychowiak, M.
    Gradic, D.
    Killer, C.
    Niemann, H.
    Szepesi, T.
    Wenzel, U.
    Ali, A.
    Anda, G.
    Baldzuhn, J.
    Barbui, T.
    Biedermann, C.
    Blackwell, B. D.
    Bosch, H-S
    Bozhenkov, S.
    Brakel, R.
    Brezinsek, S.
    Cai, J.
    Cannas, B.
    Coenen, J. W.
    Cosfeld, J.
    Dinklage, A.
    Dittmar, T.
    Drewelow, P.
    Drews, P.
    Dunai, D.
    Effenberg, F.
    Endler, M.
    Feng, Y.
    Fellinger, J.
    Ford, O.
    Frerichs, H.
    Fuchert, G.
    Gao, Y.
    Geiger, J.
    Goriaev, A.
    Hammond, K.
    Harris, J.
    Hathiramani, D.
    Henkel, M.
    Kazakov, Ye O.
    Kirschner, A.
    Knieps, A.
    Kobayashi, M.
    Kocsis, G.
    Kornejew, P.
    Kremeyer, T.
    Lazerzon, S.
    [J]. NUCLEAR FUSION, 2019, 59 (09)
  • [44] Engineering design for the magnetic diagnostics of Wendelstein 7-X
    Endler, M.
    Brucker, B.
    Bykov, V.
    Cardella, A.
    Cads, A.
    Dobmeier, F.
    Dudek, A.
    Fellinger, J.
    Geiger, J.
    Grosser, K.
    Grulke, O.
    Hartmann, D.
    Hathiramani, D.
    Hoechel, K.
    Koeppen, M.
    Laube, R.
    Neuner, U.
    Peng, X.
    Rahbarnia, K.
    Rummel, K.
    Sieber, T.
    Thiel, S.
    Vorkoeper, A.
    Werner, A.
    Windisch, T.
    Ye, M. Y.
    [J]. FUSION ENGINEERING AND DESIGN, 2015, 100 : 468 - 494
  • [45] Specific Features of Wendelstein 7-X Structural Analyses
    Bykov, Victor
    Fellinger, Joris
    Schauer, Felix
    Koeppen, Matthias
    Egorov, Konstantin
    van Eeten, Paul
    Dudek, Andzej
    Andreeva, Tamara
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2014, 42 (03) : 690 - 697
  • [46] Quality assurance during assembly of Wendelstein 7-X
    Vilbrandt, Reinhard
    [J]. FUSION ENGINEERING AND DESIGN, 2011, 86 (6-8) : 655 - 658
  • [47] Design and Prototype of the High Voltage In-Service-Tests on the Superconducting Magnet System of Wendelstein 7-X
    Fuellenbach, F.
    Rummel, Th.
    Moennich, Th.
    Koester, E.
    [J]. IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2014, 24 (03)
  • [48] Predictive simulations of NBI ion power load to the ICRH antenna in Wendelstein 7-X
    Kontula, J.
    Akaslompolo, S.
    Ikaheimo, A.
    Lazerson, S.
    Kurki-Suonio, T.
    Hartmann, D.
    Rust, N.
    McNeely, P.
    Kazakov, Ye O.
    Ongena, J.
    [J]. PLASMA PHYSICS AND CONTROLLED FUSION, 2023, 65 (07)
  • [49] Wendelstein 7-X Magnets: Experiences Gained During the First Years of Operation
    Rummel, Thomas
    Risse, Konrad
    Nagel, Michael
    Moenich, Thomas
    Schneider, Matthias
    Fuelenbach, Frank
    Bosch, Hans-Stephan
    [J]. FUSION SCIENCE AND TECHNOLOGY, 2019, 75 (08) : 786 - 793
  • [50] Backside Protection for Wendelstein 7-X In-Vessel Components
    Zhu, Jiawu
    Bykov, Victor
    John, Andre
    Wegener, Lutz
    Bosch, Hans-Stephan
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2020, 48 (06) : 1457 - 1462