• DocumentCode
    2066224
  • Title

    Blanket design for the ARIES-I tokamak reactor

  • Author

    Wong, C.P.C. ; Cheng, E.T. ; Creedon, R.L. ; Leuer, J.A. ; Schultz, K.R. ; Grotz, S.P. ; Ghoniem, N.M. ; Hasan, M.Z. ; Martin, R.C. ; Najmabadi, F. ; Sharafat, S. ; Kunugi, T. ; Sze, D.-K. ; Herring, J.S. ; Miller, R.L. ; Greenspan, E.

  • Author_Institution
    Gen. Atomics, San Diego, CA, USA
  • fYear
    1989
  • fDate
    2-6 Oct 1989
  • Firstpage
    1035
  • Abstract
    For the Advanced Reactor Innovation and Evaluation Study-I (ARIES-I) tokamak power reactor design, the authors evaluated two gas-cooled, low-activation ceramic blanket designs, a 5-MPa helium-cooled design, and a 0.5-MPa CO2 gas-carried, Li4 SiO4 particulate design. The more extensive database available for the helium-cooled option has prompted the selection of this option as the reference design. The selected ARIES-I blanket design uses SiC composite as the structural material, 5-MPa helium as coolant, Li4SiO4 as the solid tritium breeder, and Be metal pellets as the neutron multiplier. This combination of materials provides the design of a high nuclear performance blanket with high-outlet temperature, good neutron multiplication, and adequate tritium breeding. It is a low-activation design that satisfies the criteria for 10CFR61 Class-C shallow land waste disposal, and achieves inherent safety since it produces negligible after heat, thus virtually eliminating the possibility of exposing the public to radioactivity. The mechanical design, neutronics analysis, thermal-hydraulic analysis, power-conversion system design, tritium extraction, and safety evaluation are summarized
  • Keywords
    Tokamak devices; fusion reactor materials; fusion reactor safety; fusion reactor theory and design; mechanical engineering; 0.5 MPa; 5 MPa; ARIES-I; Advanced Reactor Innovation and Evaluation Study-I; He cooling; Li4SiO4-SiC-Be; T breeding; T extraction; ceramic blanket; mechanical design; neutron multiplication; neutronics; power-conversion system design; safety; thermal-hydraulic analysis; tokamak; waste disposal; Ceramics; Composite materials; Databases; Inductors; Inorganic materials; Neutrons; Safety; Silicon carbide; Technological innovation; Tokamaks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fusion Engineering, 1989. Proceedings., IEEE Thirteenth Symposium on
  • Conference_Location
    Knoxville, TN
  • Type

    conf

  • DOI
    10.1109/FUSION.1989.102390
  • Filename
    102390