Overview of the ITER-like wall project

被引:184
|
作者
Matthews, G. F. [1 ]
Edwards, P.
Hirai, T.
Kear, M.
Lioure, A.
Lomas, P.
Loving, A.
Lungu, C.
Maier, H.
Mertens, P.
Neilson, D.
Neu, R.
Pamela, J.
Philipps, V.
Piazza, G.
Riccardo, V.
Rubel, M.
Ruset, C.
Villedieu, E.
Way, M.
机构
[1] UKAEA Euratom Fus Assoc, Culham Sci Ctr, Abingdon, Oxon, England
[2] EURATOM, Forschungszentrum Julich, Julich, Germany
[3] EFDA, Close Support Unit, Culham Sci Ctr, Abingdon, Oxon, England
[4] Assoc Euratom MEdC, Nat Inst Laser Plasma & Radiat Phys, Bucharest, Romania
[5] Max Planck Inst Plasma Phys, EURATOM Assoc, D-85748 Garching, Germany
[6] EFDA, Close Support Unit, D-85748 Garching, Germany
[7] Royal Inst Technol KTH, Assoc EURATOM VR, Alfven Lab, S-10044 Stockholm, Sweden
[8] CEA, EURATOM Assoc, Cadarache, DSM DRFC, St Paul Les Durance, France
[9] EURATOM, TEKES, VTT Proc, Espoo, Finland
[10] ENEA, EURATOM Assoc, Frascati, Italy
[11] CEN SCK, EURATOM Assoc, B-2400 Mol, Belgium
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1088/0031-8949/2007/T128/027
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Work is in progress to completely replace, in 2008/9, the existing JET CFC tiles with a configuration of plasma facing materials consistent with the ITER design. The ITER-like wall (ILW) will be created with a combination of beryllium ( Be), tungsten ( W), W-coated CFC and Be-coated inconel tiles, with the material depending on the local anticipated heat flux and geometry. It is part of an integrated package of JET enhancements whose aim is to develop an understanding of the ITER materials issues and develop the techniques required to operate with inductive and advanced scenarios as close as possible to ITER parameters. Over 4000 tiles will be replaced and the ILW will accommodate additional heating up to at least 50 MW for 10 s. This paper describes the scientific background to the project, the technical objectives, the material configuration selected, the R&D behind the practical realization of the objectives and the generic problems associated with the Be tiles ( power handling capacity and disruption induced eddy currents). One of the objectives is to maintain or improve the existing CFC tile power handling performance which has been achieved in most cases by hiding bolt holes, optimizing tile size and profile and introducing castellations on plasma facing surfaces.
引用
收藏
页码:137 / 143
页数:7
相关论文
共 50 条
  • [21] Calorimetry of the JET ITER-Like Wall components
    Devaux, S.
    Arnoux, G.
    Corre, Y.
    Gardarein, J-L.
    Gaspar, J.
    Jacquet, P.
    Marcotte, F.
    Matthews, G.
    Beaumont, P.
    Cramp, S.
    Dalley, S.
    Kinna, D.
    Horton, A.
    Lomas, P.
    Mertens, Ph.
    Riccardo, V.
    Valcarcel, D.
    JOURNAL OF NUCLEAR MATERIALS, 2013, 438 : S1208 - S1211
  • [22] Engineering challenges of the JET ITER-like Wall
    Riccardo, V.
    JOURNAL OF NUCLEAR MATERIALS, 2009, 390-91 : 895 - 899
  • [23] The ITER-like ICRH launcher project for JET
    Durodié, F
    Agarici, G
    Amarante, G
    Baity, FW
    Beaumont, B
    Brémond, S
    Chappuis, P
    Damiani, C
    Fanthome, J
    Goulding, RH
    Hosea, J
    Jones, GH
    Kaye, A
    Lamalle, PU
    Loesser, GD
    Lorenz, A
    Mead, M
    Messineo, MA
    Monakhov, I
    Nelson, B
    Nightingale, M
    Paméla, J
    Portafaix, C
    Riccardo, V
    Semeraro, L
    Talarico, C
    Turker, E
    Vulliez, K
    Walden, A
    Walton, R
    Wilson, JR
    Wouters, P
    RADIO FREQUENCY POWER IN PLASMAS, 2003, 694 : 98 - 101
  • [24] Operational limits for the ITER-like wall in JET
    Riccardo, V.
    Firdaouss, M.
    Joffrin, E.
    Matthews, G.
    Mertens, Ph
    Thompson, V.
    Villedieu, E.
    PHYSICA SCRIPTA, 2009, T138
  • [25] The impact of the ITER-like wall at JET on disruptions
    de Vries, P. C.
    Arnoux, G.
    Huber, A.
    Flanagan, J.
    Lehnen, M.
    Riccardo, V.
    Reux, C.
    Jachmich, S.
    Lowry, C.
    Calabro, G.
    Frigione, D.
    Tsalas, M.
    Hartmann, N.
    Brezinsek, S.
    Clever, M.
    Douai, D.
    Groth, M.
    Hender, T. C.
    Hodille, E.
    Joffrin, E.
    Kruezi, U.
    Matthews, G. F.
    Morris, J.
    Neu, R.
    Philipps, V.
    Sergienko, G.
    Sertoli, M.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2012, 54 (12)
  • [26] Overview of erosion-deposition diagnostic tools for the ITER-Like Wall in the JET tokamak
    Rubel, M.
    Coad, J. P.
    Widdowson, A.
    Matthews, G. F.
    Esser, H. G.
    Hirai, T.
    Likonen, J.
    Linke, J.
    Lungu, C. P.
    Mayer, M.
    Pedrick, L.
    Ruset, C.
    JOURNAL OF NUCLEAR MATERIALS, 2013, 438 : S1204 - S1207
  • [27] Material migration patterns and overview of first surface analysis of the JET ITER-like wall
    Widdowson, A.
    Alves, E.
    Ayres, C. F.
    Baron-Wiechec, A.
    Brezinsek, S.
    Catarino, N.
    Coad, J. P.
    Heinola, K.
    Likonen, J.
    Matthews, G. F.
    Mayer, M.
    Rubel, M.
    PHYSICA SCRIPTA, 2014, T159
  • [28] R&D on full tungsten divertor and beryllium wall for JET ITER-like wall project
    Hirai, T.
    Maier, H.
    Rubel, M.
    Mertens, Ph.
    Neu, R.
    Gauthier, E.
    Likonen, J.
    Lungu, C.
    Maddaluno, G.
    Matthews, G. F.
    Mitteau, R.
    Neubauer, O
    Piazza, G.
    Philipps, V.
    Riccardi, B.
    Ruset, C.
    Uytdenhouwen, I.
    FUSION ENGINEERING AND DESIGN, 2007, 82 (15-24) : 1839 - 1845
  • [29] The JET ITER-like wall experiment: First results and lessons for ITER
    Horton, Lorne
    FUSION ENGINEERING AND DESIGN, 2013, 88 (6-8) : 434 - 439
  • [30] PLASMA FACING MATERIALS FOR THE JET ITER-LIKE WALL
    Thomser, C.
    Bailescu, V.
    Brezinsek, S.
    Coenen, J. W.
    Greuner, H.
    Hirai, T.
    Linke, J.
    Lungu, C. P.
    Maier, H.
    Matthews, G.
    Mertens, Ph
    Neu, R.
    Philipps, V.
    Riccardo, V.
    Rubel, M.
    Ruset, C.
    Schmidt, A.
    Uytdenhouwen, I.
    FUSION SCIENCE AND TECHNOLOGY, 2012, 62 (01) : 1 - 8