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DOE OSTI · 3451940

HFIR Steady State Heat Transfer Code (HSSHTC) Statistical Uncertainty Analysis

Abstract

HSSHTC, the safety basis steady state TH code for HFIR, uses a highly conservative approach in which all input and calculation uncertainties are resolved simultaneously at their most limiting setting. This results in excessive conservatism which does not account for the high unlikelihood of such simultaneous worst-case conditions. The present study explores an alternative approach, BEPU, in which reasonable working assumptions for the probability distribution of each input uncertainty are used to determine a relationship between burnout power margin and core fuel failure probability. This was performed under a philosophy of perturbing uncertainty parameters already defined within the HSSHTC methodology while preserving the HSSHTC calculation approach and solution methodology itself. Based on the assumptions employed in this study, the BEPU approach resulted in a 0.29 increase in burnout power ratio (25 MW increase in burnout power) compared to the latest HSSHTC calculations of C-HFIR-2026-004. The study can be refined in the future by employing fuel fabrication data to provide more realistic input distributions. Future changes to the HSSHTC methodology would potentially allow a more comprehensive treatment of uncertainties which may further increase the burnout power ratio.

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BibTeXRIS

Wysocki, Aaron [ORNL] (ORCID:0000000222043779), Harris, Laura [ORNL] (ORCID:0000000187858007). 2026-07-01. HFIR Steady State Heat Transfer Code (HSSHTC) Statistical Uncertainty Analysis. https://doi.org/10.2172/3451940

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