Response of Oxide Fuel to Simulated Thermal Transients
Author:
Affiliation:
1. Argome National Laboratory Materials Science Division, 9700 South Cass Avenue, Argonne, Illinois 60439 KEYWORDS: LMFBRs, simula
Publisher
Informa UK Limited
Subject
Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics
Link
https://www.tandfonline.com/doi/pdf/10.13182/NT78-A32119
Reference15 articles.
1. E. W. BARTS, L. W. DEITRICH, J. C. EBERHART, A. K. FISCHER, and C. C. MEEK, “Summary and Evaluation-Fuel Dynamics Loss-of-Flow Experiments (Tests L2, L3, and L4),” ANL-75-57, Argonne National Laboratory (1975).
2. Observations of Irradiated Fuel Behavior Under Simulated Accident Heating Conditions
3. Fuel and Fission Gas Response to Simulated Thermal Transients: Experimental Results and Correlation with Fission Gas Release and Swelling Model
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1. Fission gas disposition in decay heat environment;Nuclear Engineering and Design;1982-06
2. Effect of Burnup on the Response of Stainless Steel-Qad Mixed-Oxide Fuels to Simulated Thermal Transients;Journal of the American Ceramic Society;1981-07
3. A Note on Transient Fuel Behavior Maps for Oxide Nuclear Reactor Fuel;Nuclear Technology;1981-01
4. Microstructural studies of irradiated mixed-oxide fuels subjected to multiple, mild thermal transients;Journal of Nuclear Materials;1980-08
5. The Role of Fission Gas and Fuel Melting in Fuel Response during Simulated Hypothetical Loss-of-Flow Transients;Nuclear Technology;1980-01
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