Fuel retention in impurity seeded discharges in JET after Be evaporation

被引:15
作者
Brezinsek, S. [1 ]
Loarer, T. [3 ]
Krieger, K. [4 ]
Jachmich, S. [5 ]
Tsalas, M. [6 ]
Coffey, I. [7 ]
Esser, H. G. [1 ]
Eich, T. [4 ]
Fundamenski, W. [7 ]
Giroud, C. [7 ]
Gruenhagen, S. [7 ]
Huber, A. [1 ]
Kruezi, U. [1 ]
Knipe, S. [7 ]
Maddison, G. P. [7 ]
McCormick, K. [4 ]
Meigs, A. G. [7 ]
Morgan, Ph. [7 ]
Philipps, V. [1 ]
Sergienko, G. [1 ]
Stagg, R. [7 ]
Stamp, M. F. [7 ]
Tabares, F. L. [8 ]
机构
[1] Forschungszentrum Julich, Inst Energy & Climate Res Plasma Phys, Assoc EURATOM FZJ, D-52425 Julich, Germany
[2] Culham Sci Ctr, JET EFDA, Abingdon OX14 3DB, Oxon, England
[3] IRFM, CEA, F-13108 St Paul Les Durance, France
[4] EURATOM IPP, Max Planck Inst Plasmaphys, D-85748 Garching, Germany
[5] ERM KMS, Assoc Euratom Etat Belge, Brussels, Belgium
[6] NCSR Demokritos, Assoc EURATOM Hellen Republ, Attica, Greece
[7] Culham Sci Ctr, EURATOM CCFE Fus Assoc, Abingdon OX14 3DB, Oxon, England
[8] CIEMAT, Asociac EURATOM, Lab Nacl Fus, E-28040 Madrid, Spain
关键词
D O I
10.1088/0029-5515/51/7/073007
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
Preparatory experiments for the ITER-Like Wall in JET were carried out to simulate the massive Be first wall by a thin Be layer, induced by evaporation of about 2.0 g Be, and to study its impact on fuel retention and divertor radiation with reduced C content and N seeding. Residual gas analysis reveals a reduction of hydrocarbons by one order of magnitude and of O by a factor of 5 in the partial pressure owing to the evaporation. The evolution of wall conditions, impurity fluxes and divertor radiation have been studied in ELMy H-mode plasmas (B-t = 2.7T, I-p = 2.5 MA, P-aux = 16MW) whereas a non-seeded reference discharge was executed prior to the evaporation. The in situ measured Be flux at the midplane increased by about a factor of 40 whereas the C flux decreased by similar to 50% in the limiter phase of the first discharge with respect to the reference, but erosion of the Be layer and partial coverage with C takes place quickly. To make best use of the protective Be layer, only the first four discharges were employed for a gas balance analysis providing a D retention rate of 1.94 x 10(21) Ds(-1) which is comparable to rates with C walls. But the Be evaporation provides a non-saturated surface with respect to D and short term retention is not negligible in the balance; the measured retention is overestimated with respect to steady-state conditions like that of the ILW. Moreover, C was only moderately reduced and co-deposition of fuel with eroded Be and C occurs. The lower C content leads to a minor reduction in divertor radiation as the reference phase prior to seeding indicates. N adds to the radiation of D and the remaining C, and the N content rises due to the legacy effect which has been quantified by gas balance to be 30% of the injected N. C radiation increases with exposure time, and both contributors cause an increase in the radiated fraction in the divertor from 50% to 70%. The radiation pattern suggests that N dominates the increase in the first discharges though C is still the dominating radiator. Therefore, the validity of a proxy of the Be first wall by a thin Be layer is limited and restricted to plasma operation directly after the Be evaporation.
引用
收藏
页数:9
相关论文
共 13 条
[1]   Impact of nitrogen seeding on carbon erosion in the JET divertor [J].
Brezinsek, S. ;
Jachmich, S. ;
Rapp, J. ;
Meigs, A. G. ;
Nicholas, C. ;
O'Mullane, M. ;
Pospieszczyk, A. ;
van Rooij, G. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 417 (1-3) :624-628
[2]   Overview of experimental preparation for the ITER-Like Wall at JET [J].
Brezinsek, S. ;
Fundamenski, W. ;
Eich, T. ;
Coad, J. P. ;
Giroud, C. ;
Huber, A. ;
Jachmich, S. ;
Joffrin, E. ;
Krieger, K. ;
McCormick, K. ;
Lehnen, M. ;
Loarer, T. ;
de la Luna, E. ;
Maddison, G. ;
Matthews, G. F. ;
Mertens, Ph. ;
Nunes, I. ;
Philipps, V. ;
Riccardo, V. ;
Rubel, M. ;
Stamp, M. F. ;
Tsalas, M. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 415 (01) :S936-S942
[3]  
BREZINSEK S, 2010, P 23 INT C FUS EN 20
[4]  
GIROUD C, 2010, P 23 INT C FUS EN 20
[5]   Plasma surface interactions in impurity seeded plasmas [J].
Kallenbach, A. ;
Balden, M. ;
Dux, R. ;
Eich, T. ;
Giroud, C. ;
Huber, A. ;
Maddison, G. P. ;
Mayer, M. ;
McCormick, K. ;
Neu, R. ;
Petrie, T. W. ;
Puetterich, T. ;
Rapp, J. ;
Reinke, M. L. ;
Schmid, K. ;
Schweinzer, J. ;
Wolfe, S. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 415 (01) :S19-S26
[6]   Be wall sources and migration in L-mode discharges after Be evaporation in the JET tokamak [J].
Krieger, K. ;
Brezinsek, S. ;
Jachmich, S. ;
Lisgo, S. ;
Stamp, M. ;
Esser, H. G. ;
Kreter, A. ;
Menmuir, S. ;
Mertens, Ph. ;
Philipps, V. ;
Sundelin, P. .
JOURNAL OF NUCLEAR MATERIALS, 2009, 390-91 :110-114
[7]  
KRIEGER K, 2010, P 23 INT C FUS EN 20
[8]   Fuel retention in tokamaks [J].
Loarer, T. .
JOURNAL OF NUCLEAR MATERIALS, 2009, 390-91 :20-28
[9]   Moderation of target loads using fuelling and impurity seeding on JET [J].
Maddison, G. ;
Giroud, C. ;
McCormick, K. ;
Alonso, A. ;
Alper, B. ;
Andrew, Y. ;
Arnoux, G. ;
Belo, P. ;
Beurskens, M. ;
Boboc, A. ;
Brett, A. ;
Brezinsek, S. ;
Brix, M. ;
Coffey, I. ;
de la Luna, E. ;
Devaux, S. ;
de Vries, P. ;
Devynck, P. ;
Eich, T. ;
Felton, R. ;
Fundamenski, W. ;
Harling, J. ;
Harting, D. ;
Hobirk, J. ;
Huber, A. ;
Jachmich, S. ;
Jenkins, I. ;
Joffrin, E. ;
Kallenbach, A. ;
Kempenaars, M. ;
Lehnen, M. ;
Loarer, T. ;
Lomas, P. ;
McDonald, D. ;
Meigs, A. ;
Monier-Garbet, P. ;
Morgan, P. ;
Moulton, D. ;
Riccardo, V. ;
Rimini, F. ;
Sergienko, G. ;
Sirinelli, A. ;
Stamp, M. ;
Telesca, G. ;
Thomsen, H. ;
Voitsekhovitch, I. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 415 (01) :S313-S317
[10]   Current status of the JET ITER-like Wall Project [J].
Matthews, G. F. ;
Edwards, P. ;
Greuner, H. ;
Loving, A. ;
Maier, H. ;
Mertens, Ph ;
Philipps, V. ;
Riccardo, V. ;
Rubel, M. ;
Ruset, C. ;
Scmidt, A. ;
Villedieu, E. .
PHYSICA SCRIPTA, 2009, T138