Influence of porosity formation on irradiated UO2 fuel thermal conductivity at high burnup
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference19 articles.
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2. A model for the effect of the progression of irradiation-induced recrystallization from initiation to completion on swelling of UO2 and U–10Mo nuclear fuels;Rest;J. Nucl. Mater.,2005
3. Derivation of analytical expressions for the network dislocation density, change in lattice parameter, and for the recrystallized grain size in nuclear fuels;Rest;J. Nucl. Mater.,2006
4. A Physical Description of Fission Product Behavior in Fuels for Advanced Power Reactors;Rest,2007
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1. The pore aggregation characterized by spatial statistics methods and its effect on the damage behavior based on the configurational forces of the M-integral in MOX fuel;Journal of Nuclear Materials;2024-09
2. Comparative analysis of swelling and porosity evolution in UO2 fuel via two approaches;Kerntechnik;2023-04-14
3. Modeling of heat transfer in a fuel pellet based on uranium dioxide and ceramics (beryllium oxide);Kompleksnoe Ispolʹzovanie Mineralʹnogo syrʹâ/Complex Use of Mineral Resources/Mineraldik Shikisattardy Keshendi Paidalanu;2021-09-12
4. Modelling of effective irradiation swelling for inert matrix fuels;Nuclear Engineering and Technology;2021-02
5. Including high burnup structure effect in the UO2 fuel thermal conductivity model;Progress in Nuclear Energy;2021-01
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