Modeling intra-granular fission gas bubble evolution and coarsening in uranium dioxide during in-pile transients
被引:22
作者:
Barani, T.
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Politecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, ItalyPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Barani, T.
[1
]
Pastore, G.
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Idaho Natl Lab, Computat Mech & Mat Dept, POB 1625, Idaho Falls, ID 83415 USA
Univ Tennessee, Dept Nucl Engn, 1412 Circle Dr, Knoxville, TN 37916 USAPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Pastore, G.
[2
,4
]
Magni, A.
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Politecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, ItalyPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Magni, A.
[1
]
Pizzocri, D.
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Politecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, ItalyPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Pizzocri, D.
[1
]
Van Uffelen, P.
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European Commiss, Joint Res Ctr, Directorate Nucl Safety & Secur, POB 2340, D-76125 Karlsruhe, GermanyPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Van Uffelen, P.
[3
]
Luzzi, L.
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Politecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, ItalyPolitecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
Luzzi, L.
[1
]
机构:
[1] Politecn Milan, Nucl Engn Div, Dept Energy, Via La Masa 34, I-20156 Milan, Italy
[2] Idaho Natl Lab, Computat Mech & Mat Dept, POB 1625, Idaho Falls, ID 83415 USA
[3] European Commiss, Joint Res Ctr, Directorate Nucl Safety & Secur, POB 2340, D-76125 Karlsruhe, Germany
[4] Univ Tennessee, Dept Nucl Engn, 1412 Circle Dr, Knoxville, TN 37916 USA
Fission gas behavior;
Intra-granular behavior;
Bubble coarsening;
Oxide fuel;
Gaseous swelling;
Fuel performance codes;
EQUATION-OF-STATE;
IRRADIATED UO2 FUEL;
HIGH-RESOLUTION TEM;
WATER-REACTOR;
NUCLEAR-FUEL;
XAS CHARACTERIZATION;
MOLECULAR-DYNAMICS;
RE-SOLUTION;
OXIDE FUEL;
PART I;
D O I:
10.1016/j.jnucmat.2020.152195
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
The description of intra-granular fission gas behavior during irradiation is a fundamental part of models used for the calculation of fission gas release and gaseous swelling in nuclear fuel performance codes. The relevant phenomena include diffusion of gas atoms towards the grain boundaries coupled to the evolution of intra-granular bubbles. While intra-granular bubbles during normal operating conditions are limited to sizes of a few nanometers, experimental evidence exists for the appearance of a second population of bubbles during transients, characterized by coarsening to sizes of tens to hundreds of nanometers and that can significantly contribute to gaseous fuel swelling. In this work, we present a model of intra-granular fission gas behavior in uranium dioxide fuel that includes both nanometric fission gas bubble evolution and bubble coarsening during transients. While retaining a physical basis, the developed model is relatively simple and is intended for application in engineering fuel performance codes. We assess the model through comparisons to a substantial number of experimental data from SEM observations of intra-granular bubbles in power ramp tested uranium dioxide samples. The results demonstrate that the model reproduces the coarsening of a fraction of the intra-granular bubbles and correspondingly, predicts gaseous swelling during power ramps with a significantly higher accuracy than is allowed by traditional models limited to the evolution of nanometric intra-granular bubbles. (c) 2020 The Authors. Published by Elsevier B.V.