Direct Nuclear Heating Measurements and Analyses for Structural Materials Induced by Deuterium-Tritium Neutrons
Author:
Affiliation:
1. Japan Atomic Energy Research Institute Department of Reactor Engineering, Tokai, Ibaraki 319-11, Japan
2. University of California, Los Angeles School of Engineering and Applied Science, Los Angeles, California 90095
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST95-A30404
Reference33 articles.
1. M.A. ABDOU, C.W. MAYNARD, and R.Q. WRIGHT, “MACK: A Computer Program to Calculate Neutron Energy Release Parameters (Fluence-to-Kerma Factor) and Multigroup Reaction Cross Sections from Nuclear Data in ENDF Format,” ORNL-TM-3994, Oak Ridge National Laboratory (July 1973).
2. Calculational Methods for Nuclear Heating-Part I: Theoretical and Computational Algorithms
3. Calculational Methods for Nuclear Heating—Part II: Applications to Fusion-Reactor Blankets and Shields
4. Y. FARAWILA, Y. GOHAR, and C.W. MAYNARD, “KAOS/LIB-V: A Library of Nuclear Response Functions Generated by KAOS-V Code from ENDF/B-V and Other Data Files,” ANL/FPP/TM-241, Argonne National Laboratory (1989).
5. K. MAKI, H. KAWASAKI, K. KOSAKO, and Y. SEKI, “Nuclear Heating Constant KERMA Library,” JAERI-M 91-073, Japan Atomic Energy Research Institute (1991) (in Japanese).
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1. Verification of KERMA factor for beryllium at neutron energy of 14.2MeV based on charged-particle measurement;Fusion Engineering and Design;2008-12
2. Experimental measurement of nuclear heating in a graphite-cantered assembly in deuterium–tritium neutron environment for the validation of data and calculation;Fusion Engineering and Design;1998-09
3. Nuclear heating measurements for SS-316, copper, graphite, tungsten, chromium, beryllium in a copper centered assembly bombarded with 14MeV neutrons and analysis;Fusion Engineering and Design;1998-09
4. Japan Atomic Energy Research Institute/United States Integral Neutronics Experiments and Analyses for Tritium Breeding, Nuclear Heating, and Induced Radioactivity;Fusion Technology;1995-08
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