European high-power CW gyrotron development for ECRH systems

被引:58
作者
Albertia, S [1 ]
Arnold, A
Borie, E
Dammertz, G
Erckmann, V
Garin, P
Giguet, E
Illy, S
Le Cloarec, G
Le Goff, Y
Magne, R
Michel, G
Piosczyk, B
Tran, C
Tran, MQ
Thumm, M
Wagner, D
机构
[1] Ecole Polytech Fed Lausanne, Assoc Euratom Confederat Suisse, Ctr Rech Phys Plasmas, CH-1015 Lausanne, Switzerland
[2] EURATOM Assoc, Forschungszentrum Karlsruhe, FZK, IHM,PMW, D-76021 Karlsruhe, Germany
[3] EURATOM Assoc, Max Planck Inst Plasmaphys, IPP, D-85748 Garching, Germany
[4] EURATOM Assoc, CEA, Dept Rech Fus Controlee, F-13108 St Paul Durance, France
[5] Thomson Tubes Elect, F-78141 Velizy Villacoublay, France
[6] Univ Stuttgart, Inst Plasmaforsch, D-70569 Stuttgart, Germany
关键词
high-power CW gyrotron; ECRH systems;
D O I
10.1016/S0920-3796(00)00514-7
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The development of high power CW gyrotrons for ECRH heating of fusion relevant plasmas has been in progress for several years in a joint collaboration between different European research institutes and an industrial partner. Two development are on going, aiming, respectively, towards a 0.51-MW-210-s gyrotron at 118 GHz for the tokamaks TCV of CRPP (2 s pulse length) and Tore Supra of CEA (210 s pulse length), and towards a 1 MW-CW gyrotron at 140 GHz for the stellarator W7-X under construction in Greifswald. Series 118 GHz gyrotrons have been delivered to CRPP and CEA. Long pulse results (15.5 s at 400 kW) as well as considerations on power modulation capabilities of the tube and on long pulse effects are discussed. In a second development program, a 1-MW/CW 140 GHz gyrotron with a CVD diamond window and a single-stage depressed collector has been designed and constructed as a first prototype for the 10-MW ECRH (Elecron Cyclotion Resonance Heating) system of the new stellarator experiment Wendelstein 7-X of IPP Greifswald/Germany. The gyrotron operates in the TE28.8 cavity mode and provides a linearly polarized, TEM0.0 Gaussian RF beam. It is composed of a diode MIG gun, an improved beam tunnel, a high-mode purity low-ohmic loss cavity, an optimized non-linear up-taper, a highly efficient internal quasi-optical mode converter employing an improved launcher together with one quasi-elliptical and two beam shaping reflectors, a large single stage depressed collector at ground potential with a beam sweeping magnet, and a horizontal RF output. (C) 2001 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:387 / 397
页数:11
相关论文
共 17 条
[1]   EXPERIMENTAL MEASUREMENTS OF COMPETITION BETWEEN FUNDAMENTAL AND SECOND-HARMONIC EMISSION IN A QUASI-OPTICAL GYROTRON [J].
ALBERTI, S ;
PEDROZZI, M ;
TRAN, MQ ;
HOGGE, JP ;
TRAN, TM ;
MUGGLI, P ;
JODICKE, B ;
MATHEWS, HG .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1990, 2 (11) :2544-2546
[2]  
Alberti S., 1996, P 21 INT C INFR MILL
[3]  
[Anonymous], P 6 JOINT EPA APS IN
[4]   CALCULATION OF MIG GUNS FOR GYROTRONS USING THE BFCPIC CODE [J].
BORIE, E ;
GRUBER, C ;
WESTERMANN, T .
INTERNATIONAL JOURNAL OF ELECTRONICS, 1995, 78 (04) :789-807
[5]  
BRAZ O, 1995, P 20 INT C INFR MILL, P281
[6]   3D WAVEBEAM FIELD RECONSTRUCTION FROM INTENSITY MEASUREMENTS IN A FEW CROSS-SECTIONS [J].
CHIRKOV, AV ;
DENISOV, GG ;
ALEKSANDROV, NL .
OPTICS COMMUNICATIONS, 1995, 115 (5-6) :449-452
[7]   ELECTRON-CYCLOTRON-RESONANCE HEATING AND CURRENT DRIVE IN TOROIDAL FUSION PLASMAS [J].
ERCKMANN, V ;
GASPARINO, U .
PLASMA PHYSICS AND CONTROLLED FUSION, 1994, 36 (12) :1869-1962
[8]  
GAPONOVGREKHOV AV, 1991, P INT WORKSH STRONG, P677
[9]  
GARIN P, 1995, P 20 INT C INFR MILL, P271
[10]  
GIGUET E, 1995, P 20 INT C INFR MILL, P339