DOE OSTI · 3021396
Advanced Reactor Designs Security Analysis, Risk, and Recommendations: Risks, Consequences, and Possible by-Design Mitigation Approaches Associated with Select Advanced Reactors
Abstract
Next-generation advanced reactors (ARs) incorporate enhanced safety systems, have smaller source terms, and feature compact modular designs, which should lessen their collective risk profiles. However, to fully evaluate risk, security needs to be a part of the equation. Without taking security into consideration, safety systems and components in the new ARs may be vulnerable to sabotage. These base attributes, coupled with enhanced security features specific to AR design through sound engineering and security-by-design (SeBD), should provide developers and operators with lower inherent security risk profiles. Building security early into the AR design may remove or passively secure potential critical targets from an adversary’s reach , thereby increasing overall safety and security. An integrated approach and diverse design team that includes engineering, operations, and security experts are fundamental to building security into the design without sacrificing fundamental operational efficiencies and principles. The objective of this project was to evaluate the security and safety interfaces for five classes of reactors, identify potential security vulnerabilities of structures, systems, and components (SSC), and underscore the need to consider security alongside safety in the design o f these concepts. The five reactor classes evaluated in this project and presented in this report are molten-salt reactors (MSR), high temperature gas reactors (HTGR), sodium-fast reactors (SFR), advanced light-water reactors (ALWR), and microreactors. These designs were selected because they reflect the concepts that are closest to market deployment and have received significant resource investments from the public and private sector. This project assesses the inherent security risks posed by common classes of ARs, provides a methodology and framework to assess security along with safety, and offers an analysis of potential mitigation strategies that could be incorporated. For each AR technology, the SSCs that relate to radionuclide source safety functions are discussed to understand the SSC contribution to safety and relative importance in the protective strategy for the design. The assumptions that went into evaluating each reactor concept originated from generic publicly available nonproprietary information and should not directly be used to qualify an absolute risk profile nor to rank specific AR designs. Instead, the purpose of the analysis is to understand and compare the generic inherent security risks of different AR technologies.
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Christian, Robby [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Chwasz, Christopher Paul [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Ferrara, Scott [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Holcomb, David [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Morgan, Baleigh [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Ryan, Emerald [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Sabharwall, Piyush [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Schiavo, Sam [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Smith, Curtis [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], St. Germain, Shawn [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Yadav, Vaibhav [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Yilgor, Ilyas [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Zhang, Sai [Idaho National Laboratory (INL), Idaho Falls, ID (United States)], Bucknor, Matthew [Argonne National Laboratory (ANL), Argonne, IL (United States)], Grabaskas, Dave [Argonne National Laboratory (ANL), Argonne, IL (United States)], Belles, Randy [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)], Conant, Andrew [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)]. 2025-09-20. Advanced Reactor Designs Security Analysis, Risk, and Recommendations: Risks, Consequences, and Possible by-Design Mitigation Approaches Associated with Select Advanced Reactors. https://doi.org/10.2172/3021396
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