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Devanathan, Ram; Van Brutzel, Laurent; Chartier, Alain; Christine, Gueneau; Mattsson, Ann; Tikare, Veena; Bartel, Timothy; Besmann, Theodore M.; Stan, Marius; Van Uffelen, Paul
Oak Ridge National Laboratory (United States). Funding organisation: NE USDOE - Office of Nuclear Energy (United States)2010
Oak Ridge National Laboratory (United States). Funding organisation: NE USDOE - Office of Nuclear Energy (United States)2010
AbstractAbstract
[en] We review the state of modeling and simulation of nuclear fuels with emphasis on the most widely used nuclear fuel, UO2. The hierarchical scheme presented represents a science-based approach to modeling nuclear fuels by progressively passing information in several stages from ab initio to continuum levels. Such an approach is essential to overcome the challenges posed by radioactive materials handling, experimental limitations in modeling extreme conditions and accident scenarios and small time and distance scales of fundamental defect processes. When used in conjunction with experimental validation, this multiscale modeling scheme can provide valuable guidance to development of fuel for advanced reactors to meet rising global energy demand.
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Source
AF5810000; NEAF224; AC05-00OR22725; ISSN 1754-5706; 

Record Type
Journal Article
Journal
Energy and Environmental Science (Print); ISSN 1754-5692;
; v. 3(10); p. 1406-1426

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