Goal-based error estimation for the multi-dimensional diamond difference and box discrete ordinate (SN) methods
Author(s)
Type
Journal Article
Abstract
Goal-based error estimation due to spatial discretization and adaptive mesh refinement (AMR) has previously been investigated for the one dimensional, diamond difference, discrete ordinate (1-D DD-SN) method for discretizing the Neutron Transport Equation (NTE). This paper investigates the challenges of extending goal-based error estimation to multi-dimensions with supporting evidence provided on 2-D fixed (extraneous) source and Keff eigenvalue (criticality) verification test cases. It was found that extending Hennart’s weighted residual view of the lowest order 1-D DD equations to multi-dimensions gave what has previously been called the box method. This paper shows how the box method can be extended to higher orders. The paper also shows an equivalence between the higher order box methods and the higher order DD methods derived by Hébert et al. Though, less information is retained in the final solution in the latter case. These extensions allow for the definition of dual weighted residual (DWR) error estimators in multi-dimensions for the DD and box methods. However, they are not applied to drive AMR in the multi-dimensional case due to the various challenges explained in this paper.
Date Issued
2020-01-30
Date Acceptance
2019-10-21
Citation
Journal of Computational and Theoretical Transport, 2020, 49 (2), pp.51-87
ISSN
2332-4309
Publisher
Informa UK Limited
Start Page
51
End Page
87
Journal / Book Title
Journal of Computational and Theoretical Transport
Volume
49
Issue
2
Copyright Statement
© 2020 Taylor & Francis. This is an Accepted Manuscript of an article published by Taylor & Francis in Journal of Computational and Theoretical Transport on 30 January 2020, available online: https://doi.org/10.1080/23324309.2019.1710214
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Engineering & Physical Science Research Council (E
Identifier
https://www.tandfonline.com/doi/full/10.1080/23324309.2019.1710214
Grant Number
EP/J002011/1
EP/R511547/1
Subjects
Science & Technology
Physical Sciences
Mathematics, Applied
Physics, Mathematical
Mathematics
Physics
Goal-based error estimation
diamond difference
dual weighted residual
neutron transport equation
transport theory
SPATIAL CONVERGENCE
TRANSPORT
ADAPTATION
ADAPTIVITY
EQUATIONS
AMR
Publication Status
Published
Date Publish Online
2020-01-30