Fusion reactor safety—Issues and perspective

Author:

Inabe Teruo,Seki Masahiro,Tsunematsu Toshihide

Publisher

Elsevier BV

Subject

Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering

Reference15 articles.

1. Dose delivered by unit amount of tritium released into the environment;Murata;J. Nucl. Sci. Technol.,1997

2. Shimomura, et al., Safety characteristics of ITER, IAEACN-64/FP-2, Sixteenth IAEA Fusion Energy Conference, Montreal (Canada), October 7–11, 1996.

3. U.S. Department of Energy, DOE Standard—Safety of Magnetic Fusion Facilities: Requirements, DOE-STD-6002-96, 1996.

4. J. Raeder, et al., Safety and Environmental Assessment of Fusion Power (SEAFP), EURFUBRU XII-217/95, 1995.

5. International Atomic Energy Agency, Technical Basis for the ITER Interim Design Report, Cost Review and Safety Analysis, ITER EDA Documentation Series, No. 7, 1996.

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1. Comparative Maps of Safety Features for Fission and Fusion Reactors;Journal of Nuclear Engineering and Radiation Science;2023-09-15

2. Safety Analysis for Modular IEC Fusor Particle Accelerators;2023 3rd International Conference on Electrical, Computer, Communications and Mechatronics Engineering (ICECCME);2023-07-19

3. Validation and benchmarking in support of ITER-FEAT safety analysis;Fusion Engineering and Design;2001-04

4. Lessons learned from the ITER safety approach for future fusion facilities;Fusion Engineering and Design;2001-04

5. Safety design for ITER and fusion power reactors;Fusion Engineering and Design;2000-11

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