Assembly-level analyses of an innovative long-life marine SMR loaded with accident tolerant fuel
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering
Reference27 articles.
1. Assembly-level analyses of accident-tolerant cladding concepts for a long-life civil marine SMR core using micro-heterogeneous duplex fuel;Alam;Prog. Nucl. Energy,2019
2. Neutronic design study of a small modular IPWR loaded with accident tolerant-fully ceramic micro-encapsulated (AT-FCM) fuel;Awan;Nucl. Eng. Design,2018
3. Forward for special JNM issue on accident tolerant fuels for LWRs Preface;Carmack;J. Nucl. Mater.,2014
4. ENDF/B-VII.0: next generation evaluated nuclear data library for nuclear science and technology;Chadwick;Nucl. Data Sheets,2017
5. “Neutronic Analysis on Potential Accident Tolerant Fuel-Cladding Combination U 3 Si 2 -FeCrAl.”;Chen;Sci. Technol. Nucl. Installations,2017
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2. Development and Verification of Neutron Kinetics Parameter Calculation Program Applicable to Subcritical Systems of Long-Life Reactors;Nuclear Technology;2024-06-14
3. Realistic performance assessment of FeCrAl-UN/U3Si2 accident tolerant fuel under loss-of-coolant accident scenario;Reliability Engineering & System Safety;2024-03
4. Machine Learning and Artificial Intelligence-Driven Multi-scale Modeling for High Burnup Accident-Tolerant Fuels for Light Water-Based SMR Applications;Handbook of Smart Energy Systems;2023
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