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Advanced Designs

Nuclear Analysis of the FIRE Ignition Device

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Pages 393-397 | Published online: 17 Jan 2018

References

  • R. Thome, “Engineering Overview of the Fusion Ignition Research Experiment (FIRE),” Proc. IEEE 18th Symposium on Fusion Engineering, Albuquerque, NM, Oct. 25-29 1999, IEEE Cat. No. 99CH37050, pp. 163.
  • R.E. Alcouffe et al, “DANTSYS 3.0, One-, Two-, and Three-Dimensional Multigroup Discrete Ordinates Transport Code System,” RSICC Computer Code Collection CCC-547, Contributed by Los Alamos National Lab, August 1995.
  • J. Sisolak, et al, “DKR-PULSAR2.0: A Radioactivity Calculation Code that Includes Pulsed/Intermittent Operation,” to be published.
  • Technical Basis for the ITER Final Design Report, Cost Review and Safety Analysis, ITER EDA Documentation Series, International Atomic Energy Agency, Vienna, December 1997.
  • M.L. Tupper et al, “Magnet Insulation with Resistance to High Levels of Radiation,” Proceedings of the 16th International Conference on Magnet Technology, Jacksonville, FL, September 1999.
  • L.A. El-Guebaly, “Nuclear Issues and Analysis for ARIES Spherical and Advanced Tokamaks,” Proc. 5th Symposium on Fusion Nuclear Technology, Rome, September 19-24, 1999 (To be published in Fusion Engineering & Design).
  • Nuclear Regulatory Commission, 10CFR part 61, “Licensing Requirements for Land Disposal of Radioactive Waste,” Federal Register, FR 47, 57446 (1982).
  • S. Fetter, E. Cheng and F. Mann, “Long Term Radioactive Waste from Fusion Reactors,” Fusion Engineering and Design, 13, 239 (1990).

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