Energy Deposition and Shielding Requirements for All Concepts of the Blanket Comparison and Selection Study
Author:
Affiliation:
1. Argonne National Laboratory Applied Physics Division, Fusion Power Program 9700 South Cass Avenue, Argonne, Illinois 60439
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST85-A24576
Reference22 articles.
1. Radiation effects in superconducting fusion-magnet materials
2. Influence of radiation damage on the maximum attainable magnetic field for toroidal fusion magnet systems
3. Fusion neutron damage in superconductors and magnet stabilizers
4. Critical current density changes in irradiated Nb3Sn
5. High-energy-neutron damage in NB3SN: Changes in critical properties, and damage-energy analysis
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1. Blanket Design and Optimization Demonstrations of the First Wall/Blanket/Shield Design and Optimization System (BSDOS);Fusion Science and Technology;2005-05-01
2. Multiplier, moderator, and reflector materials for advanced lithium–vanadium fusion blankets;Journal of Nuclear Materials;2000-12
3. High power density self-cooled lithium–vanadium blanket;Fusion Engineering and Design;2000-11
4. Design analysis and optimization of self-cooled lithium blankets and shields;Fusion Engineering and Design;1989-01
5. Energy Multiplication in High Tritium Breeding Ratio Blanket with Front Breeder Zone for Fusion Reactors;Journal of Nuclear Science and Technology;1988-01
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