Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)

The objective of this thesis is the power transient analysis concerning experimental devices placed within the reflector of Jules Horowitz Reactor (JHR). Since JHR material testing facility is designed to achieve 100 MW core thermal power, a large reflector hosts fissile material samples that are...

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Main Author: Console Camprini, Patrizio <1984>
Other Authors: Sumini, Marco
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2013
Subjects:
Online Access:http://amsdottorato.unibo.it/5689/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-56892014-03-24T16:30:38Z Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR) Console Camprini, Patrizio <1984> ING-IND/18 Fisica dei reattori nucleari The objective of this thesis is the power transient analysis concerning experimental devices placed within the reflector of Jules Horowitz Reactor (JHR). Since JHR material testing facility is designed to achieve 100 MW core thermal power, a large reflector hosts fissile material samples that are irradiated up to total relevant power of 3 MW. MADISON devices are expected to attain 130 kW, conversely ADELINE nominal power is of some 60 kW. In addition, MOLFI test samples are envisaged to reach 360 kW for what concerns LEU configuration and up to 650 kW according to HEU frame. Safety issues concern shutdown transients and need particular verifications about thermal power decreasing of these fissile samples with respect to core kinetics, as far as single device reactivity determination is concerned. Calculation model is conceived and applied in order to properly account for different nuclear heating processes and relative time-dependent features of device transients. An innovative methodology is carried out since flux shape modification during control rod insertions is investigated regarding the impact on device power through core-reflector coupling coefficients. In fact, previous methods considering only nominal core-reflector parameters are then improved. Moreover, delayed emissions effect is evaluated about spatial impact on devices of a diffuse in-core delayed neutron source. Delayed gammas transport related to fission products concentration is taken into account through evolution calculations of different fuel compositions in equilibrium cycle. Provided accurate device reactivity control, power transients are then computed for every sample according to envisaged shutdown procedures. Results obtained in this study are aimed at design feedback and reactor management optimization by JHR project team. Moreover, Safety Report is intended to utilize present analysis for improved device characterization. Alma Mater Studiorum - Università di Bologna Sumini, Marco 2013-05-24 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/5689/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic ING-IND/18 Fisica dei reattori nucleari
spellingShingle ING-IND/18 Fisica dei reattori nucleari
Console Camprini, Patrizio <1984>
Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
description The objective of this thesis is the power transient analysis concerning experimental devices placed within the reflector of Jules Horowitz Reactor (JHR). Since JHR material testing facility is designed to achieve 100 MW core thermal power, a large reflector hosts fissile material samples that are irradiated up to total relevant power of 3 MW. MADISON devices are expected to attain 130 kW, conversely ADELINE nominal power is of some 60 kW. In addition, MOLFI test samples are envisaged to reach 360 kW for what concerns LEU configuration and up to 650 kW according to HEU frame. Safety issues concern shutdown transients and need particular verifications about thermal power decreasing of these fissile samples with respect to core kinetics, as far as single device reactivity determination is concerned. Calculation model is conceived and applied in order to properly account for different nuclear heating processes and relative time-dependent features of device transients. An innovative methodology is carried out since flux shape modification during control rod insertions is investigated regarding the impact on device power through core-reflector coupling coefficients. In fact, previous methods considering only nominal core-reflector parameters are then improved. Moreover, delayed emissions effect is evaluated about spatial impact on devices of a diffuse in-core delayed neutron source. Delayed gammas transport related to fission products concentration is taken into account through evolution calculations of different fuel compositions in equilibrium cycle. Provided accurate device reactivity control, power transients are then computed for every sample according to envisaged shutdown procedures. Results obtained in this study are aimed at design feedback and reactor management optimization by JHR project team. Moreover, Safety Report is intended to utilize present analysis for improved device characterization.
author2 Sumini, Marco
author_facet Sumini, Marco
Console Camprini, Patrizio <1984>
author Console Camprini, Patrizio <1984>
author_sort Console Camprini, Patrizio <1984>
title Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
title_short Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
title_full Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
title_fullStr Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
title_full_unstemmed Power Transient Analysis of Experimental Devices for Jules Horowitz Material Testing Reactor (JHR)
title_sort power transient analysis of experimental devices for jules horowitz material testing reactor (jhr)
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2013
url http://amsdottorato.unibo.it/5689/
work_keys_str_mv AT consolecamprinipatrizio1984 powertransientanalysisofexperimentaldevicesforjuleshorowitzmaterialtestingreactorjhr
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