Design of ITER vacuum vessel in-wall shielding

被引:9
|
作者
Wang, X. [1 ]
Ioki, K. [1 ]
Morimoto, M. [2 ]
Choi, C. H. [1 ]
Utin, Y. [1 ]
Sborchia, C. [1 ]
TaiLhardat, O. [3 ]
Mille, B. [1 ]
Terasawa, A. [1 ]
Gribov, Y. [1 ]
Barabash, V. [1 ]
Polunovskiy, E. [1 ]
Dani, S. [1 ]
Pathak, H. [4 ]
Raval, J. [4 ]
Liu, S. [5 ]
Lu, M. [5 ]
Du, S. [5 ]
机构
[1] ITER Org, F-13115 St Paul Les Durance, France
[2] Mitsubishi Heavy Ind Co Ltd, Hyogo Ku, Kobe, Hyogo, Japan
[3] ZAC ST MARTIN, Assyst EOS, F-84120 Pertuis, France
[4] ITER India, Inst Plasma Res, Gandhinagar 382025, India
[5] Chinese Acad Sci, Inst Plasma Phys, Hefei, Peoples R China
关键词
ITER; Vacuum vessel; In-wall shielding; Design;
D O I
10.1016/j.fusengdes.2014.03.026
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The ITER vacuum vessel is a torus-shaped, double wall structure. The space between the double walls of the VV is filled with in-wall shielding (IWS) and cooling water. The main purpose of the in-wall shielding is to provide neutron shielding together with the blanket and VV shells and water during ITER plasma operation and to reduce the ripple of the Toroidal magnetic field. Based on ITER vacuum vessel structure and related requirements, in-wall shielding are designed as about 8900 individual blocks with different sizes and several different materials distributed over nine vessel sectors and nine field joints of vessel sectors. This paper presents the design of the IWS, considering loads, structural stresses and assembly method, and also shows neutron shielding effect and TF ripple reduced by the IWS. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:1814 / 1819
页数:6
相关论文
共 50 条
  • [41] Simplified models of the ITER vacuum vessel for global seismic analyses
    Di Martino, Fabrizio
    Ayneto Pou, Jordi
    Schioler, Tyge
    Lo Frano, Rosa
    Aquaro, Donato
    FUSION ENGINEERING AND DESIGN, 2018, 136 : 1354 - 1358
  • [42] Shielding Design for Activated First Wall Transferring in ITER Hot Cell Building
    Yu, Shengpeng
    Yang, Qi
    Chen, Chao
    Hu, Liqin
    Wu, Yican
    Loughlin, Michael
    JOURNAL OF FUSION ENERGY, 2015, 34 (04) : 887 - 894
  • [43] Software design of the hybrid robot machine for ITER vacuum vessel assembly and maintenance
    Li, Ming
    Wu, Huapeng
    Handroos, Heikki
    Yang, Guangyou
    FUSION ENGINEERING AND DESIGN, 2013, 88 (9-10) : 1872 - 1876
  • [44] On structural analyses of the ITER vacuum vessel bolometer camera housing conceptual design
    Jaksic, N.
    Meister, H.
    Penzel, F.
    Hermann, D.
    Pataki, A.
    Reichle, R.
    FUSION ENGINEERING AND DESIGN, 2019, 146 : 120 - 123
  • [45] Shielding Design for Activated First Wall Transferring in ITER Hot Cell Building
    Shengpeng Yu
    Qi Yang
    Chao Chen
    Liqin Hu
    Yican Wu
    Michael Loughlin
    Journal of Fusion Energy, 2015, 34 : 887 - 894
  • [46] Nuclear analysis and shielding optimisation in support of the ITER In-Vessel Viewing System design
    Turner, Andrew
    Pampin, Raul
    Loughlin, M. J.
    Ghani, Zamir
    Hurst, Gemma
    Lo Bue, Alessandro
    Mangham, Samuel
    Puiu, Adrian
    Zheng, Shanliang
    FUSION ENGINEERING AND DESIGN, 2014, 89 (9-10) : 1949 - 1953
  • [47] Assembly of ITER blanket module to vacuum vessel experimental investigations
    Jones, LP
    Alfilé, P
    Antonucci, C
    Cardella, A
    Dupuy, C
    Daenner, W
    Elio, F
    Maisonnier, D
    Pizzuto, A
    Schmeskal, T
    FUSION ENGINEERING AND DESIGN, 2001, 58-59 : 567 - 571
  • [48] Detailed design and fabrication method of the upper and lower ports for the ITER vacuum vessel
    Ahn, H. J.
    Kwon, T. H.
    Hong, Y. S.
    Kim, Y. K.
    Lee, C. D.
    Park, K. H.
    Lee, J. S.
    Kim, T. S.
    Cho, S.
    Her, N. I.
    Kim, B. C.
    FUSION ENGINEERING AND DESIGN, 2007, 82 (15-24) : 1960 - 1968
  • [49] Structural analysis of the ITER Vacuum Vessel regarding 2012 ITER Project-Level Loads
    Martinez, J. -M.
    Jun, C. H.
    Portafaix, C.
    Choi, C. -H.
    Ioki, K.
    Sannazzaro, G.
    Sborchia, C.
    Cambazar, M.
    Corti, Ph.
    Pinori, K.
    Sfarni, S.
    Tailhardat, O.
    Borrelly, S.
    Albin, V.
    Pelletier, N.
    FUSION ENGINEERING AND DESIGN, 2014, 89 (7-8) : 1836 - 1842
  • [50] The design of the ITER first wall panels
    Mitteau, R.
    Calcagno, B.
    Chappuis, P.
    Eaton, R.
    Gicquel, S.
    Chen, J.
    Labusov, A.
    Martin, A.
    Merola, M.
    Raffray, R.
    Ulrickson, M.
    Zacchia, F.
    FUSION ENGINEERING AND DESIGN, 2013, 88 (6-8) : 568 - 570