Recent progress of the ECRH system and initial experimental results on the J-TEXT tokamak

被引:0
作者
夏冬辉
陈曦璇
徐登峰
方建港
张俊利
王能超
杨州军
陈忠勇
丁永华
郑玮
马少翔
王之江
潘垣
机构
[1] InternationalJointResearchLaboratoryofMagneticConfinementFusionandPlasmaPhysics,StateKeyLaboratoryofAdvancedElectromagneticEngineeringandTechnology,SchoolofElectricalandElectronicEngineering,HuazhongUniversityofScienceandTechnology
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TL631.24 [];
学科分类号
082701 ;
摘要
In order to broaden the range of the plasma parameters and provide experimental conditions for physical research into high-performance plasma,the development of the electron cyclotron resonance heating(ECRH) system for the J-TEXT tokamak was initiated in 2017.For the first stage,the ECRH system operated successfully with one 105 GHz/500 kW/1 s gyrotron in 2019.More than 400 kW electron cyclotron(EC) wave power has been injected into the plasma successfully,raising the core electron temperature to 1.5 keV.In 2022,another 105 GHz/500 kW/1 s gyrotron completed commissioning tests which signifies that the ECRH system could generate an EC wave power of 1 MW in total.Under the support of the ECRH system,various physical experiments have been carried out on J-TEXT.The electron thermal transport in ECRH plasmas has been investigated.When ECRH is turned on,the electron thermal diffusivity significantly increases.The runaway current is elevated when a disruption occurs during ECRH heating.When the injected EC wave power is 400 kW,the conversion efficiency of runaway current increases from 35% to 75%.Fast electron behavior is observed in electron cyclotron current drive(ECCD) plasma by the fast electron bremsstrahlung diagnostic(FEB).The increase in the FEB intensity implies that ECCD could generate fast electrons.A successful startup with a 200 kW ECW is achieved.With the upgrade of the ECRH system,the J-TEXT operational range could be expanded and further relevant research could be conducted.
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页码:127 / 137
页数:11
相关论文
共 11 条
[1]   Disruption avoidance through the prevention of NTM destabilization in TCV [J].
Sheikh, U. A. ;
Duval, B. P. ;
Galperti, C. ;
Maraschek, M. ;
Sauter, O. ;
Sozzi, C. ;
Granucci, G. ;
Kong, M. ;
Labit, B. ;
Merle, A. ;
Rispoli, N. .
NUCLEAR FUSION, 2018, 58 (10)
[2]  
Status, Operation, and Extension of the ECRH System at ASDEX Upgrade[J] . D. Wagner,J. Stober,F. Leuterer,F. Monaco,S. Müller,M. Münich,C. J. Rapson,M. Reich,M. Schubert,H. Schütz,W. Treutterer,H. Zohm,M. Thumm,T. Scherer,A. Meier,G. Gantenbein,J. Jelonnek,W. Kasparek,C. Lechte,B. Plaum,T. Goodman,A. G. Litvak,G. G. Denisov,A. Chirkov,V. Zapevalov,V. Malygin,L. G. Popov,V. O. Nichiporenko,V. E. Myasnikov,E. M. Tai,E. A. Solyanova,S. A. Malygin,ASDEX Upgrade Team.Journal of Infrared, Millimeter,
[3]   Runaway electron beam generation and mitigation during disruptions at JET-ILW [J].
Reux, C. ;
Plyusnin, V. ;
Alper, B. ;
Alves, D. ;
Bazylev, B. ;
Belonohy, E. ;
Boboc, A. ;
Brezinsek, S. ;
Coffey, I. ;
Decker, J. ;
Drewelow, P. ;
Devaux, S. ;
de Vries, P. C. ;
Fil, A. ;
Gerasimov, S. ;
Giacomelli, L. ;
Jachmich, S. ;
Khilkevitch, E. M. ;
Kiptily, V. ;
Koslowski, R. ;
Kruezi, U. ;
Lehnen, M. ;
Lupelli, I. ;
Lomas, P. J. ;
Manzanares, A. ;
Martin De Aguilera, A. ;
Matthews, G. F. ;
Mlynar, J. ;
Nardon, E. ;
Nilsson, E. ;
von Thun, C. Perez ;
Riccardo, V. ;
Saint-Laurent, F. ;
Shevelev, A. E. ;
Sips, G. ;
Sozzi, C. ;
Abhangi, M. ;
Abreu, P. ;
Aftanas, M. ;
Afzal, M. ;
Aggarwal, K. M. ;
Aho-Mantila, L. ;
Ahonen, E. ;
Aints, M. ;
Airila, M. ;
Albanese, R. ;
Alegre, D. ;
Alessi, E. ;
Aleynikov, P. ;
Alfier, A. .
NUCLEAR FUSION, 2015, 55 (09)
[4]   Multi-field/multi-scale turbulence response to electron cyclotron heating of DIII-D ohmic plasmas [J].
Wang, G. ;
Peebles, W. A. ;
Rhodes, T. L. ;
DeBoo, J. C. ;
Staebler, G. M. ;
Hillesheim, J. C. ;
Yan, Z. ;
McKee, G. R. ;
Petty, C. C. ;
Solomon, W. M. ;
Burrell, K. H. ;
Doyle, E. J. ;
Leonard, A. W. ;
Schmitz, L. ;
VanZeeland, M. A. ;
White, A. E. ;
Zeng, L. .
PHYSICS OF PLASMAS, 2011, 18 (08)
[5]   Simultaneous measurement of core electron temperature and density fluctuations during electron cyclotron heating on DIII-D [J].
White, A. E. ;
Schmitz, L. ;
Peebles, W. A. ;
Rhodes, T. L. ;
Carter, T. A. ;
McKee, G. R. ;
Shafer, M. W. ;
Staebler, G. M. ;
Burrell, K. H. ;
DeBoo, J. C. ;
Prater, R. .
PHYSICS OF PLASMAS, 2010, 17 (02)
[6]   Analysis of ECRH switch on/off events in ASDEX Upgrade [J].
Kirov, KK ;
Andreev, VF ;
Leuterer, F ;
Pereverzev, GV ;
Ryter, F ;
Sushkov, A .
PLASMA PHYSICS AND CONTROLLED FUSION, 2006, 48 (02) :245-262
[7]  
Status of the 140<ce:hsp sp="0.25"/>GHz, 10<ce:hsp sp="0.25"/>MW CW transmission system for ECRH on the stellarator W7-X[J] . W. Kasparek,P. Brand,H. Braune,G. Dammertz,V. Erckmann,G. Gantenbein,F. Hollmann,M. Grünert,H. Kumric,L. Jonitz,H.P. Laqua,W. Leonhardt,G. Michel,F. Noke,B. Plaum,F. Purps,M. Schmid,T. Schulz,K. Schw?rer,M. Thumm,M. Weissgerber.Fusion Engineering and Design . 2005 (1)
[8]   Reversed-shear experiments in the T-10 tokamak [J].
Alikaev, VV ;
Borshchegovskii, AA ;
Dremin, MM ;
Esipchuk, YV ;
Kalupin, DV ;
Kirneva, NA ;
Kislov, AY ;
Kislov, DA ;
Martynov, AA ;
Myalton, TB ;
Notkin, GE ;
Poznyak, VI ;
Pavlov, YD ;
Roi, IN ;
Stepanenko, MM ;
Sushkov, AV ;
Trukhin, VM ;
Chistyakov, VV .
PLASMA PHYSICS REPORTS, 2000, 26 (03) :177-190
[9]   MHD activity and formation of the electron internal transport barrier in the T-10 tokamak [J].
Razumova, KA ;
Alikaev, VV ;
Borschegovskii, AA ;
Chistyakov, VV ;
Dremin, MM ;
Gorshkov, AV ;
Kislov, AY ;
Kislov, DA ;
Krylov, SV ;
Lysenko, SE ;
Myalton, TB ;
Notkin, GE ;
Poznyak, VI ;
Pavlov, YD ;
Roy, IN ;
Savrukhin, PV ;
Sushkov, AV ;
Sannikov, VV ;
Soldatov, SV ;
Vershkov, VA .
PLASMA PHYSICS AND CONTROLLED FUSION, 2000, 42 (09) :973-986
[10]  
High Beta and Enhanced Confinement in a Second Stable Core VH-Mode Advanced Tokamak[J] . Turnbull,Taylor,Lin-Liu,St John H.Physical review letters . 1995 (5)