DEVELOPMENT OF A CRYOGENIC TARGET DELIVERY SYSTEM FOR HiPER

被引:0
|
作者
Perin, Jean-Paul [1 ]
Perlado, Manuel [2 ]
Tolley, Martin [3 ]
机构
[1] CEA, DRFMC, Serv Basses Temp, F-38054 Grenoble, France
[2] Univ Politecn Madrid, Inst Fus Nucl DENIM, ETSII, Madrid, Spain
[3] Rutherford Appleton Lab, Cent Laser Facil, Rutherford, NJ USA
关键词
FABRICATION;
D O I
暂无
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
For the future, we have to develop new sources of energy. These new sources may be based on nuclear fusion with magnetic confinement (as with the ITER experiment) or with a new concept based on inertial confinement. The European community plans to build a facility (HiPER project) which is dedicated to reaching high gain with cryogenic targets, and to test the concepts of target mass production and rep rate shots. The cryogenic system for the 1(st) phase experiments in HiPER is based on the cryogenic system developed for the French facility Laser MegaJoule (LMJ). The latter must be modified and upgraded for direct drive targets. In particular the target must be protected from the radiation flux from the vacuum vessel by a thermal shroud In addition, the LMJ system must be equipped with a thermal system to allow layering of the fusion fuel to take place.
引用
收藏
页码:405 / 408
页数:4
相关论文
共 50 条
  • [31] Development of STF cryogenic system in KEK
    Yoshida, Jun
    Hosoyama, Kenji
    Nakai, Hirotaka
    Hara, Kazufumi
    Kojima, Yuuji
    Nakanishi, Kota
    Ichitani, Takashi
    Kaneda, Satoshi
    Sakuma, Shigemitsu
    Suzuki, Kouichi
    Kanekiyo, Takayuki
    2007 IEEE PARTICLE ACCELERATOR CONFERENCE, VOLS 1-11, 2007, : 1380 - 1382
  • [32] Development of a Chatbot Application for Cryogenic System
    Li, H. C.
    Cheng, C. C.
    Tsai, H. H.
    Hsiao, F. Z.
    Lin, Y. Z.
    Liao, W. R.
    Chuang, P. S.
    Chiou, W. S.
    Chang, S. H.
    ADVANCES IN CRYOGENIC ENGINEERING, 2020, 755
  • [33] CRYOGENIC LASER TARGET FABRICATION SYSTEM DIRECTLY OPERABLE INSIDE A TARGET CHAMBER
    RIEGER, H
    KIM, K
    BERNAT, TP
    HENDRICKS, CD
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1979, 24 (08): : 972 - 972
  • [34] Development of the Cryogenic System of AEgIS at CERN
    Derking, J. H.
    Bremer, J.
    Burghart, G.
    Doser, M.
    Dudarev, A.
    Haider, S.
    ADVANCES IN CRYOGENIC ENGINEERING, 2014, 1573 : 195 - 200
  • [35] The production and delivery of inertial fusion energy power plant fuel: The cryogenic target
    Bozek, A. S.
    Alexander, N. B.
    Bittner, D.
    Carlson, L.
    Drake, T. J.
    Flint, G. W.
    Frey, D. T.
    Goodin, D. T.
    Grant, S.
    Hund, J. F.
    Kilkenny, J. D.
    Petzoldt, R. W.
    Schroen, D. G.
    Sternke, R. W.
    Streit, J. E.
    Vermillion, B. A.
    FUSION ENGINEERING AND DESIGN, 2007, 82 (15-24) : 2171 - 2175
  • [36] Cryogenic Target Complex of the FAIR Accelerator and Prospects for Its Development
    A. V. Bukharov
    M. A. Bukharova
    E. V. Vishnevsky
    Physics of Particles and Nuclei Letters, 2023, 20 : 714 - 719
  • [37] Cryogenic Target Complex of the FAIR Accelerator and Prospects for Its Development
    Bukharov, A. V.
    Bukharova, M. A.
    Vishnevsky, E. V.
    PHYSICS OF PARTICLES AND NUCLEI LETTERS, 2023, 20 (04) : 714 - 719
  • [38] Development of plasma layering technique for cryogenic laser fusion target
    Norimatsu, T
    Takagi, M
    Izawa, Y
    Yamanaka, T
    Mima, K
    FUSION ENERGY 1996, VOL 3, 1997, : 171 - 179
  • [39] Cryogenic target handling, transfer and positioning system for the Laser MegaJoule
    Brisset, D.
    Lamaison, V.
    Paquignon, G.
    Perin, J. P.
    Bouleau, E.
    Chatain, D.
    Manzagol, J.
    FUSION SCIENCE AND TECHNOLOGY, 2007, 52 (03) : 473 - 477
  • [40] The influence of the irradiation symmetry and the foam absorber on the target compression characteristics for the HiPER
    Rozanov, V.
    Vergunova, G.
    Guskov, S.
    Demchenko, N.
    Doskoch, I.
    Stepanov, R.
    Barishpoltsev, D.
    Yakhin, R.
    Aristova, E.
    Zmitrenko, N.
    SIXTH INTERNATIONAL CONFERENCE ON INERTIAL FUSION SCIENCES AND APPLICATIONS, PARTS 1-4, 2010, 244