Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen

High temperature gas cooled reactors have a special importance in the future of nuclear technology. Due to their high thermal capacity, high burn-up and thermodynamic efficiency, a decrease in the electricity generation cost is expected. New generation high temperature reactors are designed to be in...

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Main Author: Sen, Ramazan Sonat
Published: North-West University 2009
Online Access:http://hdl.handle.net/10394/460
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-nwu-oai-dspace.nwu.ac.za-10394-4602014-04-16T03:52:55ZDevelopment of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat SenSen, Ramazan SonatHigh temperature gas cooled reactors have a special importance in the future of nuclear technology. Due to their high thermal capacity, high burn-up and thermodynamic efficiency, a decrease in the electricity generation cost is expected. New generation high temperature reactors are designed to be inherently safe. The most efficient way of hydrogen production, IS process, requires very high temperatures. Very High Temperature Gas Cooled Reactors (VHTR) of the future are considered as the heat source for hydrogen production. Two fuel types are used in high temperature reactors, namely pebble and prismatic block fuels. The South African Pebble Bed Modular Reactor (PBMR) is a promising design to be built in the near future. A very important aspect of the design of a High Temperature Gas Cooled Reactor (HTR) is to predict the neutronics of the reactor, as this determines the fission heat release. This thesis deals with the development of a model for the prediction of neutronics behaviour of the PBMR core which will be used in conjunction with a thermal hydraulic code for the design of the PBMR.Thesis (M.Ing. (Mechanical Engineering))--North-West University, Potchefstroom Campus, 2005.North-West University2009-02-06T08:05:28Z2009-02-06T08:05:28Z2005Thesishttp://hdl.handle.net/10394/460
collection NDLTD
sources NDLTD
description High temperature gas cooled reactors have a special importance in the future of nuclear technology. Due to their high thermal capacity, high burn-up and thermodynamic efficiency, a decrease in the electricity generation cost is expected. New generation high temperature reactors are designed to be inherently safe. The most efficient way of hydrogen production, IS process, requires very high temperatures. Very High Temperature Gas Cooled Reactors (VHTR) of the future are considered as the heat source for hydrogen production. Two fuel types are used in high temperature reactors, namely pebble and prismatic block fuels. The South African Pebble Bed Modular Reactor (PBMR) is a promising design to be built in the near future. A very important aspect of the design of a High Temperature Gas Cooled Reactor (HTR) is to predict the neutronics of the reactor, as this determines the fission heat release. This thesis deals with the development of a model for the prediction of neutronics behaviour of the PBMR core which will be used in conjunction with a thermal hydraulic code for the design of the PBMR. === Thesis (M.Ing. (Mechanical Engineering))--North-West University, Potchefstroom Campus, 2005.
author Sen, Ramazan Sonat
spellingShingle Sen, Ramazan Sonat
Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
author_facet Sen, Ramazan Sonat
author_sort Sen, Ramazan Sonat
title Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
title_short Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
title_full Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
title_fullStr Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
title_full_unstemmed Development of a two-dimensional static neutronics model of the pebble bed modular reactor core for FLOWNEX / Ramazan Sonat Sen
title_sort development of a two-dimensional static neutronics model of the pebble bed modular reactor core for flownex / ramazan sonat sen
publisher North-West University
publishDate 2009
url http://hdl.handle.net/10394/460
work_keys_str_mv AT senramazansonat developmentofatwodimensionalstaticneutronicsmodelofthepebblebedmodularreactorcoreforflownexramazansonatsen
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