The effect of divertor geometry on divertor and core plasma performance in JET

被引:31
|
作者
Vlases, GC [1 ]
Horton, LD
Matthews, GF
Andrew, P
Borrass, K
Chankin, A
Clement, S
Conway, G
Davies, S
Ehrenberg, J
Fishpool, G
Guo, HY
Harbour, PJ
Ingesson, LC
Jäckel, HJ
Lingertat, J
Loarte, A
Lowry, CG
Maggi, CF
McCracken, GM
Mohanti, R
Monk, RD
Reichle, R
Righi, E
Smith, R
Stamp, MF
Stangeby, PC
Taroni, A
von Hellermann, M
机构
[1] JET Joint Undertaking, Abingdon OX14 3EA, Oxon, England
[2] Univ Toronto, Toronto, ON, Canada
关键词
JET; divertor; geometry effects; H-mode performance;
D O I
10.1016/S0022-3115(98)00574-1
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
JET has completed a series of experiments in the Mk I and Mk IIA diverters on the effects of increased geometrical closure and target orientation. The potential benefits from closure were expected to be enhanced volumetric energy loss in the divertor (detachment), increased divertor neutral pressure for better pumping and He exhaust, and reduced main chamber neutral pressure for reduced sputtering. The expected effects on neutral pressures were observed. In ohmic and L-modes this led to detachment at lower upstream density and reduced density limits, in qualitative agreement with code calculations. The pumping speed was increased by about a factor of three. Z(eff) did not reduce, despite the reduced main chamber neutral pressure. In ELMy H-modes the effects of closure were less distinct, which may have been due in part to ELMs striking the upper surfaces of the divertor and main chamber limiting surfaces. The density limit and confinement quality were unaffected by changes in divertor geometry. Increasing triangularity increased the density limit, but also raised Z(eff). Confinement was degraded by either deuterium puffing or nitrogen puffing. Detachment occurred at the inner target between ELMs, but not at the outer target until confinement was strongly degraded. Vertical target ELMy I-I-modes have thinner SOL's and lower midplane separatrix densities than those run on horizontal targets in Mk IIA. Given the JET observations on the lack of sensitivity of core plasma ELMy I-I-mode performance to divertor geometry, it appears appropriate to review the possibility of simpler, lower cost divertor options than the deep divertor design currently proposed for ITER. (C) 1999 JET Joint Undertaking, published by Elsevier Science B.V. All rights reserved.
引用
收藏
页码:160 / 167
页数:8
相关论文
共 50 条
  • [41] EFFECT OF EXB DRIFT ON DIVERTOR PLASMA FLOWS
    KRASHENINNIKOV, SI
    SIGMAR, DJ
    YUSHMANOV, PN
    PHYSICS OF PLASMAS, 1995, 2 (06) : 1972 - 1975
  • [42] Effect of transport on MAR in detached divertor plasma
    Miyamoto, K
    Hatayama, A
    Ishii, Y
    Miyamoto, T
    Fukano, A
    JOURNAL OF NUCLEAR MATERIALS, 2003, 313 : 1036 - 1040
  • [43] Divertor plasma detachment
    Krasheninnikov, S. I.
    Kukushkin, A. S.
    Pshenov, A. A.
    PHYSICS OF PLASMAS, 2016, 23 (05)
  • [44] Performance of the supercritical helium cooling loop for the jet divertor cryopump
    Obert, W
    Mayaux, C
    Barth, K
    Herblin, L
    ADVANCES IN CRYOGENIC ENGINEERING, VOL 41, PTS A AND B, 1996, : 751 - 759
  • [45] A STUDY OF THE PERFORMANCE OF JET DIVERTOR CONFIGURATIONS WITH CONSISTENT TREATMENT OF IMPURITIES
    TARONI, A
    CORRIGAN, G
    SIMONINI, R
    SPENCE, J
    VLASES, G
    CONTRIBUTIONS TO PLASMA PHYSICS, 1994, 34 (2-3) : 448 - 453
  • [46] Performance of the Supercritical Helium Cooling Loop for the Jet Divertor Cryopump
    Obert, W.
    Mayaux, C.
    Barth, K.
    Herblin, L.
    1996,
  • [47] Integrated core-SOL-divertor modelling for DEMO with tin divertor
    Poradzinski, M.
    Ivanova-Stanik, I.
    Pelka, G.
    Zagorski, R.
    FUSION ENGINEERING AND DESIGN, 2017, 124 : 248 - 251
  • [48] Kinetic Modelling of Divertor Fluxes during ELMs in ITER and Effect of In/Out Divertor Plasma Asymmetries
    Hosokawa, Masanari
    Loarte, Alberto
    Huijsmans, Guido T. A.
    Takizuka, Tomonori
    Hayashi, Nobuhiko
    PLASMA AND FUSION RESEARCH, 2016, 11
  • [49] Impact of divertor geometry on H-mode confinement in the JET metallic wall
    Joffrin, E.
    Tamain, P.
    Belonohy, E.
    Bufferand, H.
    Buratti, P.
    Challis, C. D.
    Delabie, E.
    Drewelow, P.
    Dodt, D.
    Frassinetti, L.
    Garcia, J.
    Giroud, C.
    Groth, M.
    Hobirk, J.
    Jarvinen, A. E.
    Kim, H. -T.
    Koechl, F.
    Kruezi, U.
    Lipschutz, B.
    Lomas, P. J.
    de la Luna, E.
    Loarer, T.
    Maget, P.
    Maggi, C.
    Matthews, G.
    Maviglia, F.
    Meigs, A.
    Nunes, I.
    Pucella, G.
    Rimini, F.
    Saarelma, S.
    Solano, E.
    Sips, A. C. C.
    Tsalas, M.
    Voitsekhovitch, I.
    Weisen, H.
    Abduallev, S.
    Abhangi, M.
    Abreu, P.
    Afzal, M.
    Aggarwal, K. M.
    Ahlgren, T.
    Ahn, J. H.
    Aho-Mantila, L.
    Aiba, N.
    Airila, M.
    Albanese, R.
    Aldred, V.
    Alegre, D.
    Alessi, E.
    NUCLEAR FUSION, 2017, 57 (08)
  • [50] Concept of core and divertor plasma for fusion DEMO plant at JAERI
    Sato, M
    Sakurai, S
    Nishio, S
    Tobita, K
    Inoue, T
    Nakamura, Y
    Shinya, K
    Fujieda, H
    FUSION ENGINEERING AND DESIGN, 2006, 81 (8-14) : 1277 - 1284