A reduced order model for fission gas diffusion in columnar grains

In fast reactors, restructuring of the fuel micro-structure driven by high temperature and high temperature gradient can cause the formation of columnar grains. The non-spheroidal shape and the non-uniform temperature field in such columnar grains implies that standard models for fission gas diffusi...

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Veröffentlicht in:Nuclear engineering and technology 2023, 55(11), , pp.3983-3995
Hauptverfasser: Pizzocri, D., Di Gennaro, M., Barani, T., Silva, F.A.B., Zullo, G., Lorenzi, S., Cammi, A.
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Sprache:eng
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Zusammenfassung:In fast reactors, restructuring of the fuel micro-structure driven by high temperature and high temperature gradient can cause the formation of columnar grains. The non-spheroidal shape and the non-uniform temperature field in such columnar grains implies that standard models for fission gas diffusion can not be applied. To tackle this issue, we present a reduced order model for the fission gas diffusion process which is applicable in different geometries and with non-uniform temperature fields, maintaining a computational requirement in line with its application in fuel performance codes. This innovative application of reduced order models as meso-scale tools within fuel performance codes represents a first-of-a-kind achievement that can be extended beyond fission gas behaviour.
ISSN:1738-5733
2234-358X
DOI:10.1016/j.net.2023.07.013