Published January 2010 | Version v1
Journal article

High-order discrete ordinate transport in hexagonal geometry: A new capability in ERANOS

  • 1. CEA Cadarache, DEN/DER/SPRC/LEPh, Building 230, 13108 Saint Paul-lez-Durance (France)

Description

This paper presents the implementation of an arbitrary order discontinuous Galerkin scheme within the framework of a discrete ordinate solver of the neutron transport equation for nuclear reactor calculations. More precisely, it deals with non-conforming spatial meshes for the 2 D and 3 D modeling of core geometries based on hexagonal assemblies. This work aims at improving the capabilities of the ERANOS code system dedicated to fast reactor analysis and design. Both the angular quadrature and spatial scheme peculiarities for hexagonal geometries are presented. A particular focus is set on the spatial non-conforming mesh and variable order capabilities of this scheme in anticipation to the development of spatial adaptiveness algorithms. These features are illustrated on a 3 D numerical benchmark with comparison to a Monte Carlo reference and a 2 D benchmark that shows the potential of this scheme for both h-and p-adaptation.

Additional details

Publishing Information

Journal Title
Nuovo Cimento. C (Print)
Journal Volume
33
Journal Issue
1
Journal Page Range
p. 121-128
ISSN
2037-4909

Conference

Title
21. International Conference on Transport Theory
Dates
Jul 2009
Place
Torino (Italy)