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High-Fidelity Modeling Approach for Coupling Thermal, Fluid, and Neutronic Analysis in an NTP EngineNuclear thermal propulsion (NTP), with its increased efficiency compared to traditional rocket engines, is a potentially enabling technology for space missions of higher complexity, such as delivering heavy machinery or crew to the moon or other planets. Thus, exploring modeling approaches that can effectively couple the thermal, fluid, and neutronic behaviors of NTP reactors is essential to mitigate cost and schedule challenges with hardware development. This paper details one such approach which utilizes Cardinal to unify reactor physics analysis performed using OpenMC, heat transfer analysis performed using the MOOSE framework, and thermal hydraulic analysis performed using the MOOSE Thermal Hydraulic Module. This approach is demonstrated with a proof of concept that focuses on a legacy reactor geometry from the historic NERVA program. This preliminary model found an overprediction in, when compared to the reference data, axial power peaking and the temperatures of both solids and fluids by roughly 20%. It is clear, however, that the model conserved a number of broad trends, and a few model refinements should reduce the observed error. This approach has definite merit and should enable the production of informative results for more modern NTP systems. This work is a first step in creating a transient reactor model that can be updated across a sequence of time steps based on continually fluctuating, time-dependent boundary conditions.
Document ID
20260003259
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Camden Eck
(Analytical Mechanics Associates (United States) Hampton, United States)
Jacob Stonehill
(Analytical Mechanics Associates (United States) Hampton, United States)
Corey Smith
(Analytical Mechanics Associates (United States) Hampton, United States)
Date Acquired
April 20, 2026
Subject Category
Numerical Analysis
Meeting Information
Meeting: Nuclear and Emerging Technologies for Space (NETS 2026)
Location: Dayton, OH
Country: US
Start Date: April 27, 2026
End Date: April 30, 2026
Sponsors: American Nuclear Society
Funding Number(s)
CONTRACT_GRANT: 80LARC23DA003
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Professional Review
Keywords
Nuclear Thermal Propulsion
Coupled Reactor Multiphysics
Finite Element Analysis
MOOSE
Cardinal
OpenMC
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