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Multiphysics Simulation of KRUSTY Warm Critical Experiments Using MOOSE Tools

Yinbin Miao, Yan Cao, Kun Mo, Nicolas Stauff, Changho Lee, Christopher Matthews, Emily Shemon

Nuclear Science and Engineering / Volume 200 / Number 9 / September 2026 / Pages 2132-2151

Research Article / dx.doi.org/10.1080/00295639.2025.2560170

Received:March 31, 2025
Accepted:August 26, 2025
Published:July 13, 2026

A series of critical experiments were performed during the Kilopower Reactor Using Stirling TechnologY (KRUSTY) project, producing valuable and unique data for the validation of corresponding microreactor models. In this paper, the development of a high-fidelity multiphysics model of the KRUSTY microreactor within the MOOSE ecosystem is presented, with a focus on the microreactor configuration during the warm critical experiments. The model was established by coupling a deterministic neutronics model using the Griffin code, with a BISON thermomechanical model. The multiphysics model successfully simulated the KRUSTY 15 ¢ and 30 ¢ warm critical reactivity insertion experiments in satisfactory agreement with the experimental measurement data. The modeling results demonstrated the performance of MOOSE-based multiphysics tools in microreactor simulations, and spotlighted the useful applications of these tools in supporting microreactor design, qualification, and licensing activities.