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Accelerating SNP Development with Radiation Source Approximations for Far-Field Environment ModelingThe successful development and deployment of space nuclear power and propulsion technology requires a high-fidelity, efficient means of modeling ex-core radiation fields. Monte Carlo particle transport codes provide enable the highest level of fidelity in radiation field modeling but are inefficient for modeling ex-core radiation without modification. This paper details the development of an approach to ex-core radiation field modeling that maintains the fidelity of a Monte Carlo transport approach without sacrificing computational efficiency. This approach is based on recent improvements to an existing Monte Carlo transport acceleration technique known as surface source banking. As the transport of many particles is required to ensure adequate uncertainty in far field transport, analytical reconstruction techniques are employed to represent surface source banks as sampleable series of distributions in particle phase from which an arbitrarily large number of particles can be generated and simulated. All steps of this approach are incorporated into an AMA model to test both the underlying mathematics of the analytical source reconstruction process, as well as the relevance of the technique as a whole towards SNP applications. These tests demonstrated that this approach is capable of accelerating far-field radiation modeling in SNP-relevant scenarios by factors of at least nine over purely eigenvalue-based scenarios without significantly sacrificing simulation accuracy.
Document ID
20260003263
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Eleni Mowery
(Analytical Mechanics Associates (United States) Hampton, United States)
Corey Smith
(Analytical Mechanics Associates (United States) Hampton, United States)
Benoit Forget
(Massachusetts Institute of Technology Cambridge, United States)
Jarvis Caffrey
(Marshall Space Flight Center Redstone Arsenal, United States)
Date Acquired
April 20, 2026
Subject Category
Spacecraft Propulsion and Power
Nuclear Physics
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
Portions of document may include copyright protected material.
Technical Review
Professional Review
Keywords
Surface Source Banking
Modeling and Simulation
Radiation Environment
Space Nuclear Power
Space Nuclear Propulsion
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