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Equivalent Point Sources for Simulating Nuclear/Radiological Search Operations

    Douglas E. Peplow | Oak Ridge National Laboratory
    Mathew W. Swinney | Oak Ridge National Laboratory
    Andrew D. Nicholson | Oak Ridge National Laboratory
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Description

Modeling and simulation can be used to estimate the detection of different types and strengths of radioactive sources. Simulations of shielded gamma-ray sources in complex environments, such as searches in urban areas using vehicle-mounted detectors, can demonstrate what source strengths and shielding combinations should be able to be detected. For faster calculations, gamma-emitting sources that could have different shielding layers can be simulated ahead of time, resulting in equivalent point source emission distributions that can be used in larger simulation models. Larger-scale models will then run faster using equivalent point sources because the shielding layers around the sources have already been accounted for. Accompanying this paper are 260 equivalent point source emission files for 72 sources with different shielding layers, formatted for three different Monte Carlo codes. Users wanting to request versions of the SCALE and/or MCNP software can find details here: https://rsicc.ornl.gov/

Funding Information

DOE Contract Number

AC05-00OR22725

Originating Research Organization

Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)

Sponsoring Organization

Office of Science (SC)

Details

Release Date

August 11, 2026

Subject

NUCLEAR PHYSICS AND RADIATION PHYSICS

Dataset

Dataset Type

AS Animations/Simulations

Software

Data files are formatted for use in three Monte Carlo codes: SCALE/MAVRIC, MCNP, and SCALE/Shift

Cite This Dataset:

Peplow, D., Swinney, M., Nicholson, A. (2026). Equivalent Point Sources for Simulating Nuclear/Radiological Search Operations. Oak Ridge National Laboratory. https://doi.org/10.13139/ORNLNCCS/3376077.

Acknowledgements

This work was carried out [in part] at Oak Ridge National Laboratory, managed by UT-Battelle, LLC for the U.S. Department of Energy under contract DE-AC05-00OR22725.