Pedestal and ELM response to impurity seeding in JET advanced scenario plasmas

被引:53
作者
Beurskens, M. N. A. [10 ]
Arnoux, G. [1 ]
Brezinsek, A. S. [2 ]
Challis, C. D. [10 ]
de Vries, P. C. [10 ]
Giroud, C. [10 ]
Huber, A. [2 ]
Jachmich, S. [3 ]
McCormick, K. [4 ]
Pitts, R. A. [5 ]
Rimini, F. G. [1 ]
Alfier, A. [6 ]
de la Luna, E. [7 ]
Fundamenski, W. [10 ]
Gerasimov, S. [10 ]
Giovannozzi, E. [8 ]
Joffrin, E. [1 ]
Kempenaars, M. [10 ]
Litaudon, X. [1 ]
Loarer, T. [1 ]
Lomas, P. [10 ]
Mailloux, J. [10 ]
Pasqualotto, R. [6 ]
Pericoli-Ridolfini, V. [8 ]
Pugno, R. [4 ]
Rachlew, E. [9 ]
Saarelma, S. [10 ]
Solano, E. [7 ]
Walsh, M. [10 ]
Zabeo, L. [10 ]
Zastrow, K. -D. [10 ]
机构
[1] CEA DSM DRFC Cadarache, EURATOM Assoc, F-13108 St Paul Les Durance, France
[2] Forschungszentrum Julich, EURATOM Assoc, D-52425 Julich, Germany
[3] ERM KMS, Assoc EURATOM Belgian State, Brussels, Belgium
[4] Max Planck Inst Plasma Phys, EURATOM Assoc, D-85748 Garching, Germany
[5] Ecole Polytech Fed Lausanne, Confederat Suisse, EURATOM Assoc, CH-1015 Lausanne, Switzerland
[6] Assoc Euratom Enea, Consorzio RFX, I-35127 Padua, Italy
[7] Asociac EURATOM CIEMAT, Lab Nacl Fus, Madrid, Spain
[8] ENEA Ctr Ric Frascati, Assoc EURATOM ENEA, I-00044 Frascati, Italy
[9] KTH, SCI, Dept Phys, Assoc EURATOM VR, SE-10691 Stockholm, Sweden
[10] Culham Sci Ctr, UKAEA Euratom Fus Assoc, Abingdon OX14 3DB, Oxon, England
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1088/0029-5515/48/9/095004
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
Advanced scenario plasmas must often be run at low densities and high power, leading to hot edge temperatures and consequent power handling issues at plasma - surface interaction zones. Experiments at JET are addressing this issue by exploring the use of extrinsic impurity seeding and D(2) puffing to reduce heat fluxes. The experiments presented in this paper continue the line of advanced tokamak ( AT) scenario studies at high triangularity in JET by concentrating on the characterization of the edge pedestal and the ELM behaviour with deuterium and/or light impurity fuelling (neon, nitrogen). Both injection of extrinsic impurities and D2 puffing are shown to have a significant impact on the edge pedestal in typical JET AT conditions. The ELM energy loss, Delta W(ELM)/W(dia), can be reduced to below 3% and the maximum ELM penetration depth can be limited to r/a > 0.7, thus enhancing the possibility for sustainable internal transport barriers at large plasma radius. These conditions can be achieved in two separate domains, either at a radiated power fraction (F(rad)) of 30% or at a fraction of > 50%. At the lower Frad the ELMs are type I and a high pedestal pressure is maintained, but the occasional large ELM may still occur. At F(rad) > 50% the pedestal pressure is degraded by 30-50%, but the ELMs are degraded to type III. The intermediate regime at F(rad) similar to 40% is unattractive for ITB scenarios because large type I ELMs occur intermittently during the predominantly type III ELM phases (compound type I/III). F(rad) = 30% can be obtained with D(2) fuelling alone, whereas neon or nitrogen seeding is needed to achieve F(rad) > 50%. Only a limited number of tests have been carried out with nitrogen seeding, with the preliminary conclusion that the plasma edge behaviour is similar to that with neon seeding once the radiated fraction is matched.
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页数:12
相关论文
共 37 条
[1]  
ARNOUX G, 2007, 34 EPS C PLASM PHYS
[2]   Performance and control of optimized shear discharges in JET [J].
Bécoulet, A ;
Eriksson, LG ;
Baranov, YF ;
Borba, DN ;
Challis, CD ;
Conway, GD ;
Fuchs, V ;
Gormezano, C ;
Gowers, CW ;
Hawkes, NC ;
Hender, TC ;
Huysmans, GTA ;
Joffrin, E ;
Litaudon, X ;
Lomas, PJ ;
Maas, A ;
Mayoral, ML ;
Parail, VV ;
Rimini, FG ;
Rochard, F ;
Sarazin, Y ;
Sips, ACC ;
Söldner, FX ;
Zastrow, KD ;
Zwingman, WP .
NUCLEAR FUSION, 2000, 40 (06) :1113-1123
[3]   Edge localized mode physics and operational aspects in tokamaks [J].
Bécoulet, M ;
Huysmans, G ;
Sarazin, Y ;
Garbet, X ;
Ghendrih, P ;
Rimini, F ;
Joffrin, E ;
Litaudon, X ;
Monier-Garbet, P ;
Ané, JM ;
Thomas, P ;
Grosman, A ;
Parail, V ;
Wilson, H ;
Lomas, P ;
DeVries, P ;
Zastrow, KD ;
Matthews, GF ;
Lonnroth, J ;
Gerasimov, S ;
Sharapov, S ;
Gryaznevich, M ;
Counsell, G ;
Kirk, A ;
Valovic, M ;
Buttery, R ;
Loarte, A ;
Saibene, G ;
Sartori, R ;
Leonard, A ;
Snyder, P ;
Lao, LL ;
Gohil, P ;
Evans, TE ;
Moyer, RA ;
Kamada, Y ;
Chankin, A ;
Oyama, N ;
Hatae, T ;
Asakura, N ;
Tudisco, O ;
Giovannozzi, E ;
Crisanti, F ;
Perez, CP ;
Koslowski, HR ;
Eich, T ;
Sips, A ;
Horton, L ;
Hermann, A ;
Lang, P .
PLASMA PHYSICS AND CONTROLLED FUSION, 2003, 45 (12 A) :A93-A113
[4]  
CHALLIS C, 2007, 34 EPS C PLASM PHYS
[5]  
CIRIC D, 2004, 23 SOFT C VEN IT
[6]  
CORRE Y, 2007, 34 EPS C PLASM PHYS
[7]   Role of the plasma shaping in ITB experiments on JET [J].
Crisanti, F ;
Lomas, PJ ;
Tudisco, O ;
Bécoulet, A ;
Bécoulet, M ;
Bertalot, L ;
Bolzonella, T ;
Bracco, G ;
De Benedetti, M ;
Esposito, B ;
Giroud, C ;
Hawkes, NC ;
Hender, TC ;
Jarvis, ON ;
Joffrin, E ;
Pacella, D ;
Riccardo, V ;
Rimini, F ;
Zastrow, KD .
PLASMA PHYSICS AND CONTROLLED FUSION, 2003, 45 (04) :379-393
[8]  
Evans TE, 2005, J NUCL MATER, V337, P691, DOI 10.1016/j.jnucmat.2004.10.062
[9]   Sustainment of high confinement in JT-60U reversed shear plasmas [J].
Fujita, T ;
Kamada, Y ;
Ide, S ;
Takeji, S ;
Sakamoto, Y ;
Isayama, A ;
Suzuki, T ;
Oikawa, T ;
Fukuda, T .
NUCLEAR FUSION, 2002, 42 (02) :180-186
[10]   Dynamics of the formation, sustainment and destruction of transport barriers in magnetically contained fusion plasmas [J].
Gohil, P .
PLASMA PHYSICS AND CONTROLLED FUSION, 2002, 44 :A37-A61