Enhancing the ABAQUS thermomechanics code to simulate multipellet steady and transient LWR fuel rod behavior

Autor: Richard L. Williamson, D. A. Knoll
Rok vydání: 2011
Předmět:
Zdroj: Journal of Nuclear Materials. 415:74-83
ISSN: 0022-3115
DOI: 10.1016/j.jnucmat.2011.05.044
Popis: A powerful multidimensional fuels performance capability, applicable to both steady and transient fuel behavior, is developed based on enhancements to the commercially available ABAQUS general-purpose thermomechanics code. Enhanced capabilities are described, including: UO2 temperature and burnup dependent thermal properties, solid and gaseous fission product swelling, fuel densification, fission gas release, cladding thermal and irradiation creep, cladding irradiation growth , gap heat transfer, and gap/plenum gas behavior during irradiation. The various modeling capabilities are demonstrated using a 2D axisymmetric analysis of the upper section of a simplified multi-pellet fuel rod, during both steady and transient operation. Computational results demonstrate the importance of a multidimensional fully-coupled thermomechanics treatment. Interestingly, many of the inherent deficiencies in existing fuel performance codes (e.g., 1D thermomechanics, loose thermo-mechanical coupling, separate steady and transient analysis, cumbersome pre- and post-processing) are, in fact, ABAQUS strengths.
Databáze: OpenAIRE