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Enabling Dynamic Probabilistic Risk Assessment of Physical Security Using EMRALD and MAAP

Research output: Contribution to conferencePaperpeer-review

Abstract

The optimization of physical security in nuclear power plants requires sophisticated methodologies that integrate operator actions and plant behavior through advanced simulation tools. To address this, Idaho National Laboratory [JL2.1]has developed the Modeling and Analysis for Safety and Security using the Dynamic EMRALD Framework (MASS-DEF) methodology, an approach that integrates force-on-force simulations, dynamic probabilistic risk assessment, and thermal-hydraulics modeling [JL3.1]to enhance security planning while reducing costs. We developed a tool that produces reduced order models using thermal hydraulic simulations from the Modular Accident Analysis Program (MAAP) [1]. These models can quickly evaluate reactor core behavior during attack simulations, and in so doing, address two barriers of traditional methods: (1) MAAP simulations are computationally intensive, and (2) attack scenarios must be run in a secure environment, which complicates analysis and validation. By precomputing scenario outcomes for a small number of modified parameters, the reduced order model significantly decreases the computational cost and enables offsite review of the results.
Original languageEnglish
StatePublished - Jun 1 2026
EventPSAM 18 - Pittsburgh, United States
Duration: Jul 19 2026Jul 24 2026

Conference

ConferencePSAM 18
Country/TerritoryUnited States
CityPittsburgh
Period07/19/2607/24/26

INL Publication Number

  • INL/CON-26-93065
  • 218234

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