Tungsten Versus Steel in Inboard Shield of ITER: Impact on Magnet Damage, Reactor Size, and Cost
Author:
Affiliation:
1. Fusion Technology Institute, Dept. of Nuclear Engineering and Engineering Physics University of Wisconsin, 1500 Johnson Drive, Madison, WI 53706-1687 (608) 263-1623
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST89-A39805
Reference9 articles.
1. P. HAHN, H. WEBER, M. GUINAN, et al. “Neutron Irradiation of Superconductors and Damage Energy Scaling of Different Neutron Spectra,”UCRL-93186, Lawrence Livermore National Laboratory (1985).
2. M. GUINAN, R. VAN KONYNENBURG, J. MITCHELL, et al. “Effects of Low-Temperature Fusion Neutron Irradiation on Critical Properties of a Mono-filament Nb3Sn Superconductor,”UCID-20048, Lawrence Livermore National Laboratory (1984).
3. High-energy-neutron damage in NB3SN: Changes in critical properties, and damage-energy analysis
4. W. MAURER, “Neutron and Gamma Irradiation Effects on Organic Insulating Materials for Fusion Magnets,”KfK 3974, Kernforschungszentrum Karlsruhe (1985).
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1. Impact of a limiter on the tritium breeding and nuclear heating in a compact Tokamak reactor;Annals of Nuclear Energy;1992-01
2. Activation and Decommissioning Considerations for the Fusion Ignition Experiment IGNITEX;Fusion Technology;1991-05
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