DOE OSTI · 3376512
Integrated Security-Safety Consequence Study of a Heat Pipe Reactor
Abstract
This report presents a preliminary demonstration of integrated security/safety consequence modeling to support potential physical security exemption justifications under the new Title 10 Code of Federal Regulations Part 53 licensing pathway, which allows exemptions if sabotage-induced radiological consequences do not exceed 25 rem at the site boundary two hours after release without mitigative actions. A hypothetical heat pipe microreactor subjected to direct sabotage by a 150 lbs. TNT-equivalent high-explosive device was analyzed using a simplified radionuclide release estimate based on DOE-HDBK-3010-94, implemented in the MELCOR severe accident analysis code to model release transport and attenuation through reactor/building compartments, with MELCOR outputs coupled to MACCS to compute offsite doses and the distance-to-threshold metric D 25rem . Six scenarios were evaluated to examine sensitivities to release pathway/building configuration and radionuclide form (vapor versus aerosols with different size distributions). Results show a positive correlation between leak path factor and D 25rem and indicate that reactor building compartmentalization can substantially reduce consequences (a single-story configuration reduced D 25rem by roughly an order of magnitude relative to a cavity-only configuration), while vapor versus aerosol assumptions had limited impact for the modeled two-story case on the spatial grid used.
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Faucett, Christopher Anthony [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)], Evans, Alan Scott [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0009000430724541), Cipiti, Benjamin B. [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0000000317214809). 2026-06-01. Integrated Security-Safety Consequence Study of a Heat Pipe Reactor. https://doi.org/10.2172/3376512
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