DOE OSTI · 2448007
Testing the Activation Analysis for Fusion in OpenMC
Abstract
OpenMC is a community-developed Monte Carlo neutron and photon transport simulation code. It can perform fission simulations such as fixed-source, k-eigenvalue, and subcritical multiplication calculations on models built using either a constructive solid geometry or CAD representation. To explore the use of OpenMC for fusion activation analysis, a detailed model of the Fusion Neutronics Science Facility (FNSF) was first developed for comparisons against an existing SERPENT model. A 90-degree model of FNSF in Standard-Triangle-Language (STL) CAD format was converted to Constructive Solid Geometry (CSG) using each code's built-in functions, and the geometries were validated by ensuring no cells overlapped and no particles were lost during simulations. The neutron fluxes were calculated and compared for multiple components close to the plasma. The results show differences mostly below 1% in fluxes and averaged 8% for activity and decay heat. Here, the work described in this study tests the CAD-based geometry using the DagMC toolkit in OpenMC and compares the activation analysis of OpenMC to SERPENT code.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Quang, Son N., Brown, Nicholas R., Maldonado, G. Ivan. 2024-09-17. Testing the Activation Analysis for Fusion in OpenMC. https://doi.org/10.1109/tps.2024.3426323
Cite the original work for its findings. Save a collection to share your selection of sources.