Computational Breakdown of the High Conversion Light Water Reactor Infinite Lattice Void Reactivity into Contributing Nuclides and Energy Groups
Author:
Affiliation:
1. Nagoya University, Department of Nuclear Engineering, Chikusaku, Nagoya 464-01, Japan
Publisher
Informa UK Limited
Subject
Nuclear Energy and Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/NSE89-A23649
Reference18 articles.
1. High conversion ratio plutonium recycle in pressurized water reactors
2. General Features of Advanced Pressurized Water Reactors with Improved Fuel Utilization
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1. Performance of advanced self-shielding models in DRAGON Version4 on analysis of a high conversion light water reactor lattice;Annals of Nuclear Energy;2008-05
2. Analysis of Differences in Void Coefficient Predictions for Mixed-Oxide—Fueled Tight-Pitch Light Water Reactor Cells;Nuclear Science and Engineering;2000-05
3. Plutonium Recycling in a Full-MOX 900-MW(electric) PWR: Physical Analysis of Accident Behaviors;Nuclear Technology;1999-11
4. Physics of nuclear reactor safety;Reports on Progress in Physics;1992-11-01
5. Accuracy of Cell Calculation Methods Used for Analysis of High Conversion Light Water Reactor Lattice;Journal of Nuclear Science and Technology;1990-06
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