Commercial Tokamak Reactors with Resistive Toroidal Field Magnets
Author:
Affiliation:
1. Massachusetts Institute of Technology Plasma Fusion Center, Cambridge, Massachusetts 02139
2. Princeton Plasma Physics Laboratory Princeton, New Jersey 08544
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST84-A23141
Reference13 articles.
1. Shape Optimization of Tokamak Plasmas to Localized Magnetohydrodynamic Modes
2. E. BOBROV, L. BROMBERG, D. R. COHN, V. DIATCHENKO, R. J. LECLAIRE, J. E. MEYER, and J. E. C. WILLIAMS, “High Field Tokamaks with DD-DT Operation and Reduced Tritium Breeding Requirements,” PFC/RQ-83-5, Massachusetts Institute of Technology, Plasma Fusion Center (1983).
3. D. L. JASSBY and S. S. KALSI, Eds. “FED-R, A Fusion Engineering Device Utilizing Resistive Magnets,” ORNL-FEDC-82/1, Sec. 4, Appendix D, Oak Ridge National Laboratory, Fusion Engineering Design Center (Apr. 1983).
4. A Long-Pulse Ignited Test Experiment - (LITE)
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1. Improved Magnetic Fusion Energy Economics via Massive Resistive Electromagnets;Fusion Technology;1998-11
2. Advantages of high-field tokamaks for fusion reactor development;Journal of Fusion Energy;1986-09
3. Cost Assessment of a Generic Magnetic Fusion Reactor;Fusion Technology;1986-03
4. Design Options for Commercial Reactors with Resistive Magnets;Fusion Technology;1985-07
5. New Directions in Tokamak Reactors;Fusion Technology;1985-07
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