An innovative core design for a soluble-boron-free small pressurized water reactor

This research investigates the neutronic feasibility of a high-performance soluble-boron-free (SBF) small modular reactor (SMR) core based on a new burnable absorber concept called the “Burnable Absorber-Integrated Guide Thimble” (BigT). Three unique BigT designs were loaded into the core; each BigT...

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Main Authors: Yahya, M.-S., Kim, Y.
Format: Conference Paper
Language:English
Published: 2019
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spelling my.uniten.dspace-116032020-07-08T02:42:03Z An innovative core design for a soluble-boron-free small pressurized water reactor Yahya, M.-S. Kim, Y. This research investigates the neutronic feasibility of a high-performance soluble-boron-free (SBF) small modular reactor (SMR) core based on a new burnable absorber concept called the “Burnable Absorber-Integrated Guide Thimble” (BigT). Three unique BigT designs were loaded into the core; each BigT design was judiciously ascertained from the core radial power profile to tailor the required reactivity depletion patterns for an SBF operation. The approach is demonstrated to work well as the SBF SMR design exceeds the targeted cycle length while successfully controlling its burnup reactivity swing between 634 and 800 pcm throughout most of its operation. This paper also describes the use of hafnium-doped stainless steel as mechanical shim (MS) rods to attain the core criticality. Because the worth of the MS rods is relatively small, insertion and withdrawal of the rods during operation hardly alter the core radial power distributions. The resulting axial power profile, meanwhile, displays a more refined bottom-skewed pattern during the early portion of the irradiation cycle due to partial top-half insertion of the MS rods. This investigation further deliberates on a modified checker board control rod pattern to assure safe cold shutdown of the core. All calculations in this multiphysics assessment of the 3D SBF SMR core were completed by using a 2-step Monte Carlo deterministic hybrid procedure based on the Monte Carlo Serpent and COREDAX diffusion codes with the ENDF/B-7.1 nuclear data library. Copyright © 2017 John Wiley & Sons, Ltd. 2019-01-16T08:41:19Z 2019-01-16T08:41:19Z 2018 Conference Paper 10.1002/er.3792 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description This research investigates the neutronic feasibility of a high-performance soluble-boron-free (SBF) small modular reactor (SMR) core based on a new burnable absorber concept called the “Burnable Absorber-Integrated Guide Thimble” (BigT). Three unique BigT designs were loaded into the core; each BigT design was judiciously ascertained from the core radial power profile to tailor the required reactivity depletion patterns for an SBF operation. The approach is demonstrated to work well as the SBF SMR design exceeds the targeted cycle length while successfully controlling its burnup reactivity swing between 634 and 800 pcm throughout most of its operation. This paper also describes the use of hafnium-doped stainless steel as mechanical shim (MS) rods to attain the core criticality. Because the worth of the MS rods is relatively small, insertion and withdrawal of the rods during operation hardly alter the core radial power distributions. The resulting axial power profile, meanwhile, displays a more refined bottom-skewed pattern during the early portion of the irradiation cycle due to partial top-half insertion of the MS rods. This investigation further deliberates on a modified checker board control rod pattern to assure safe cold shutdown of the core. All calculations in this multiphysics assessment of the 3D SBF SMR core were completed by using a 2-step Monte Carlo deterministic hybrid procedure based on the Monte Carlo Serpent and COREDAX diffusion codes with the ENDF/B-7.1 nuclear data library. Copyright © 2017 John Wiley & Sons, Ltd.
format Conference Paper
author Yahya, M.-S.
Kim, Y.
spellingShingle Yahya, M.-S.
Kim, Y.
An innovative core design for a soluble-boron-free small pressurized water reactor
author_facet Yahya, M.-S.
Kim, Y.
author_sort Yahya, M.-S.
title An innovative core design for a soluble-boron-free small pressurized water reactor
title_short An innovative core design for a soluble-boron-free small pressurized water reactor
title_full An innovative core design for a soluble-boron-free small pressurized water reactor
title_fullStr An innovative core design for a soluble-boron-free small pressurized water reactor
title_full_unstemmed An innovative core design for a soluble-boron-free small pressurized water reactor
title_sort innovative core design for a soluble-boron-free small pressurized water reactor
publishDate 2019
_version_ 1672614162943967232
score 13.149126