info:eu-repo/semantics/article
Validations of the radiation transport module NEUTRO: A deterministic solver for the neutron transport equation
Fecha
2021-08Registro en:
Soba, Alejandro; Cazado, Mauricio Exequiel; Houzeaux, Guillaume; Gutierrez Milla, Albert; Mantsinen, Mervi J.; et al.; Validations of the radiation transport module NEUTRO: A deterministic solver for the neutron transport equation; Elsevier Science SA; Fusion Engineering And Design; 169; 112497; 8-2021; 1-8
0920-3796
CONICET Digital
CONICET
Autor
Soba, Alejandro
Cazado, Mauricio Exequiel
Houzeaux, Guillaume
Gutierrez Milla, Albert
Mantsinen, Mervi J.
Saez, Xavier
Resumen
We present significant improvements and validations of a deterministic neutron transport code (NEUTRO) dedicated to solving the Boltzmann Transport Equation. The code is integrated as a module in the Alya software package developed by the Barcelona Supercomputing Center which uses the Discrete Ordinates Method on angular coordinates, multi-group for energy discretization and FEM on unstructured meshes to treat special complex domains. The anisotropy of the scattering medium is introduced into the scattering kernel using real base expressions for spherical harmonics. In order to build the total cross-section and the respective group matrix for the elastic cross-section, we use the NJOY code. We test the solver using different geometries, orders of integration for the angular discretization and number of energy groups. Finally, we compare our results against benchmarks obtained from an NEA database that reported measurements of leakage spectra of several materials.