Modeling of SFR cores with Serpent-DYN3D codes sequence


Modeling of SFR cores with Serpent-DYN3D codes sequence

Fridman, E.; Shwageraus, E.

DYN3D reactor dynamics nodal diffusion code was originally developed for the analysis of Light Water Reactors. In this paper, we demonstrate feasibility of using DYN3D for modeling of fast spectrum reactors. Homogenized cross sections data library was generated using continuous energy Monte-Carlo code Serpent which provides significant modeling flexibility compared with traditional deterministic lattice transport codes and tolerable execution time. A representative sodium cooled fast reactor core was modeled with Serpent-DYN3D code sequence and the results were compared with those produced by ERANOS code and with 3D full core Monte Carlo solution. Very good agreement between the codes was observed for the core integral parameters and power distribution suggesting that DYN3D code with cross section library generated using Serpent can be reliably used for the analysis of fast reactors.

Keywords: Serpent; Monte Carlo; lattice physics; DYN3D; few-group cross-section generation; sodium cooled fast reactor

Permalink: https://www.hzdr.de/publications/Publ-17147