- By:
- Harp, Jason M; Yan, Yong ; Morris, Robert N; Baldwin, Charles A; Jones, Matthew M; Capps, Nathan A
- Page Number:
- 1286-1291
- Book Title:
- TopFuel 2025: Nuclear Reactor Fuel Performance Conference
- Publication Date:
- March 12, 2026
- Publisher Location:
- American Nuclear Society, Illinois, United States of America
- Conference Name:
- TopFuel 2025
- Conference Location:
- Nashville, Tennessee, United States of America
- Conference Sponsor:
- American Nuclear Society
- View DOI Listing:
- https://doi.org/10.13182/TOPFUEL25-48677
Abstract
Continuing efforts to better understand the phenomenon of transient fission gas release in irradiated commercial light water reactor fuel undergoing a simulated loss of coolant accident (LOCA) will be discussed in this work. During heating associated with LOCA conditions there is an additional release of fission gas beyond what is typically released during steady state operation. The exact timing of this release could impact the cladding balloon and rupture as the LOCA progresses in an actual accident. Recent experiments performed on the upgraded Severe Accident Test Station at Oak Ridge National Laboratory have expanded the current assessment of transient fission gas release. This system evaluates fission gas release by sweeping fission gas out of the LOCA test furnace and into cryogenically cooled cold traps where radioactive noble gas fission products are measured by gamma spectrometry. Additionally, the sweep gas can be monitored by a gas mass spectrometer to provide additional data on noble gas release and changes in the sweep gas atmosphere during heating. Several different conditions have been evaluated that explored the response of irradiated fuel to different thermal ramp conditions and different overpressure conditions. This further confirmed the impact of an overpressure in suppressing transient fission gas release. Further experiments are planned to evaluate the on-set temperature of transient fission gas release under a known overpressure. This test will progressively step through different temperature conditions while maintaining hydrostatic pressure on the fuel that is representative of high burnup fuel conditions. The available results from this type of testing will be discussed. Post-test microscopy will be compared to other transient fission gas release and standard LOCA tests to further understand the microstructural source of transient fission gas release.