NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS

Neutronic designs of AP1000 reactor using Uranium Dioxide and Reactor Grade Plutonium fuels have been conducted. This study evaluated the standard of Westinghouse AP1000 reactor and ZrB2 as Integral Fuel Burnable Absorber (IFBA). Different fuel compositions of assembly type were analyzed in by using...

Full description

Saved in:
Bibliographic Details
Main Author: NIM: 20214051, NAILATUSSAADAH
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/23422
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:23422
spelling id-itb.:234222017-09-27T14:41:06ZNEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS NIM: 20214051, NAILATUSSAADAH Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/23422 Neutronic designs of AP1000 reactor using Uranium Dioxide and Reactor Grade Plutonium fuels have been conducted. This study evaluated the standard of Westinghouse AP1000 reactor and ZrB2 as Integral Fuel Burnable Absorber (IFBA). Different fuel compositions of assembly type were analyzed in by using SRAC 2006 code system with JENDL 4.0 nuclear data library. This study aiming to compare the neutronics characteristics of reactor core using uranium dioxide and MOX (with Reactor Grade Plutonium) fuels. Some results of the study show that optimal criticality of this reactor can be achieved by some core designs with the results of k-eff are 1,0722; 1,1011; 1,0895 and 1,0998. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Neutronic designs of AP1000 reactor using Uranium Dioxide and Reactor Grade Plutonium fuels have been conducted. This study evaluated the standard of Westinghouse AP1000 reactor and ZrB2 as Integral Fuel Burnable Absorber (IFBA). Different fuel compositions of assembly type were analyzed in by using SRAC 2006 code system with JENDL 4.0 nuclear data library. This study aiming to compare the neutronics characteristics of reactor core using uranium dioxide and MOX (with Reactor Grade Plutonium) fuels. Some results of the study show that optimal criticality of this reactor can be achieved by some core designs with the results of k-eff are 1,0722; 1,1011; 1,0895 and 1,0998.
format Theses
author NIM: 20214051, NAILATUSSAADAH
spellingShingle NIM: 20214051, NAILATUSSAADAH
NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
author_facet NIM: 20214051, NAILATUSSAADAH
author_sort NIM: 20214051, NAILATUSSAADAH
title NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
title_short NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
title_full NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
title_fullStr NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
title_full_unstemmed NEUTRONIC DESIGNS OF AP1000 REACTOR USING URANIUM DIOXIDE AND REACTOR GRADE PLUTONIUM FUELS
title_sort neutronic designs of ap1000 reactor using uranium dioxide and reactor grade plutonium fuels
url https://digilib.itb.ac.id/gdl/view/23422
_version_ 1821121067192680448