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Multiscale, mechanistic modeling of irradiation-enhanced silver diffusion in TRISO particles

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9 Scopus citations

Abstract

Tristructural isotropic (TRISO) particles are under consideration for use in several proposed advanced nuclear reactor concepts. The silicon carbide (SiC) layer in TRISO acts as a barrier to prevent the release of the fission products. However, despite remarkable retention, silver (Ag) release has been observed from intact particles, which requires investigation since the Ag isotope (110mAg) has a long half-life. Previous work focused on developing a multiscale, mechanistic model for Ag diffusion accounting for temperature and microstructure effect and has been successfully validated. In this work, we expand the previous model to account for irradiation-enhanced Ag diffusivity in SiC and improve its accuracy over a wider grain size and temperature ranges relevant for advanced reactor conditions. A temperature, grain size, and flux dependent diffusivity is therefore derived using the mesoscale code MARMOT and implemented in the fuel performance code BISON. The irradiation-enhanced Ag diffusivity in SiC is compared against experimental data and validated using BISON against Ag release measurements from the Advanced Gas Reactor Fuel Development and Qualification Program (AGR-1 and AGR-2). Herein, we quantify the impact of SiC grain size, irradiation, and temperature on Ag release. In agreement with previous studies, we find accounting for SiC grain size improves agreement between BISON predictions and experimental observations for most cases. We also find that accounting for irradiation improves agreement for cases where Ag release was underestimated, but the impact was less significant than accounting for microstructure.

Original languageEnglish
Article number155464
JournalJournal of Nuclear Materials
Volume603
Early online dateOct 21 2024
DOIs
StatePublished - Jan 2025

Keywords

  • AGR-1
  • AGR-2
  • BISON
  • Effective diffusion coefficient
  • Irradiation-enhanced diffusion
  • MARMOT
  • Mechanistic, multiscale modeling
  • TRISO fuel
  • Validation

INL Publication Number

  • INL/JOU-23-75711
  • 165781

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