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 language | English |
|---|---|
| State | Published - Jun 1 2026 |
| Event | PSAM 18 - Pittsburgh, United States Duration: Jul 19 2026 → Jul 24 2026 |
Conference
| Conference | PSAM 18 |
|---|---|
| Country/Territory | United States |
| City | Pittsburgh |
| Period | 07/19/26 → 07/24/26 |
INL Publication Number
- INL/CON-26-93065
- 218234
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