Goal-based h-adaptivity of the 1-D diamond difference discrete ordinate method.
File(s)1-s2.0-S0021999117300530-main.pdf (1.21 MB)
Published version
Author(s)
Type
Journal Article
Abstract
The quantity of interest (QoI) associated with a solution of a partial differential equation (PDE) is not, in general, the solution itself, but a functional of the solution. Dual weighted residual (DWR) error estimators are one way of providing an estimate of the error in the QoI resulting from the discretisation of the PDE.
This paper aims to provide an estimate of the error in the QoI due to the spatial discretisation, where the discretisation scheme being used is the diamond difference (DD) method in space and discrete ordinate (SNSN) method in angle. The QoI are reaction rates in detectors and the value of the eigenvalue (Keff)(Keff) for 1-D fixed source and eigenvalue (KeffKeff criticality) neutron transport problems respectively. Local values of the DWR over individual cells are used as error indicators for goal-based mesh refinement, which aims to give an optimal mesh for a given QoI.
This paper aims to provide an estimate of the error in the QoI due to the spatial discretisation, where the discretisation scheme being used is the diamond difference (DD) method in space and discrete ordinate (SNSN) method in angle. The QoI are reaction rates in detectors and the value of the eigenvalue (Keff)(Keff) for 1-D fixed source and eigenvalue (KeffKeff criticality) neutron transport problems respectively. Local values of the DWR over individual cells are used as error indicators for goal-based mesh refinement, which aims to give an optimal mesh for a given QoI.
Date Issued
2017-01-25
Date Acceptance
2017-01-18
Citation
Journal of Computational Physics, 2017, 335, pp.179-200
ISSN
1090-2716
Publisher
Elsevier
Start Page
179
End Page
200
Journal / Book Title
Journal of Computational Physics
Volume
335
Copyright Statement
© 2017 The Authors. Published by Elsevier Inc. This is an open access
article
under
the
CC
BY
license
(http://creativecommons.org/licenses/by/4.0/
)
article
under
the
CC
BY
license
(http://creativecommons.org/licenses/by/4.0/
)
Subjects
Applied Mathematics
01 Mathematical Sciences
02 Physical Sciences
09 Engineering
Publication Status
Published