“TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code

Neutron transport codes are essential tools in nuclear reactor and shielding design. Transport codes implement an iterative technique that suffers from slow convergence while solving highly scattering problems. This necessitated the development of acceleration methods, among which, the diffusion syn...

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Main Authors: Tareq G. Aboalfaraj, Abdulghani M. Melaibari
Format: Article
Language:English
Published: Elsevier 1994-01-01
Series:Journal of King Saud University: Engineering Sciences
Online Access:http://www.sciencedirect.com/science/article/pii/S1018363918305993
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spelling doaj-b02cb8776e074cdf846af3c44e9e88632020-11-24T21:49:55ZengElsevierJournal of King Saud University: Engineering Sciences1018-36391994-01-01615376“TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport CodeTareq G. Aboalfaraj0Abdulghani M. Melaibari1Department of Nuclear Engineering King Abdulaziz University, Jeddah, Saudi ArabiaDepartment of Nuclear Engineering King Abdulaziz University, Jeddah, Saudi ArabiaNeutron transport codes are essential tools in nuclear reactor and shielding design. Transport codes implement an iterative technique that suffers from slow convergence while solving highly scattering problems. This necessitated the development of acceleration methods, among which, the diffusion synthetic acceleration (DSA) is the fastest and the only stable method.In this paper we present the development of “TDMGDSA”, a two dimensional multi-group diffusion synthetic accelerated neutron transport computer code. TDMGDSA implements DSA to solve the discrete ordinate equations in X–Y geometry for three spatial differencing schemes; the diamond, weighted diamond, and linear discontinuous differencing. TDMGDSA is the first to implement a linear form of DSA for the diamond differencing, and is one of the first to implement DSA for the weighted diamond and linear discontinuous differencing schemes. TDMGDSA has been tested and is shown to be working reliably.http://www.sciencedirect.com/science/article/pii/S1018363918305993
collection DOAJ
language English
format Article
sources DOAJ
author Tareq G. Aboalfaraj
Abdulghani M. Melaibari
spellingShingle Tareq G. Aboalfaraj
Abdulghani M. Melaibari
“TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
Journal of King Saud University: Engineering Sciences
author_facet Tareq G. Aboalfaraj
Abdulghani M. Melaibari
author_sort Tareq G. Aboalfaraj
title “TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
title_short “TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
title_full “TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
title_fullStr “TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
title_full_unstemmed “TDMGDSA” A Two Dimensional Multigroup Diffusion Synthetic Accelerated Transport Code
title_sort “tdmgdsa” a two dimensional multigroup diffusion synthetic accelerated transport code
publisher Elsevier
series Journal of King Saud University: Engineering Sciences
issn 1018-3639
publishDate 1994-01-01
description Neutron transport codes are essential tools in nuclear reactor and shielding design. Transport codes implement an iterative technique that suffers from slow convergence while solving highly scattering problems. This necessitated the development of acceleration methods, among which, the diffusion synthetic acceleration (DSA) is the fastest and the only stable method.In this paper we present the development of “TDMGDSA”, a two dimensional multi-group diffusion synthetic accelerated neutron transport computer code. TDMGDSA implements DSA to solve the discrete ordinate equations in X–Y geometry for three spatial differencing schemes; the diamond, weighted diamond, and linear discontinuous differencing. TDMGDSA is the first to implement a linear form of DSA for the diamond differencing, and is one of the first to implement DSA for the weighted diamond and linear discontinuous differencing schemes. TDMGDSA has been tested and is shown to be working reliably.
url http://www.sciencedirect.com/science/article/pii/S1018363918305993
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AT abdulghanimmelaibari tdmgdsaatwodimensionalmultigroupdiffusionsyntheticacceleratedtransportcode
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