NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR

A numerical analysis of thermal stratification in the upper plenum of the MONJU fast breeder reactor was performed. Calculations were performed for a 1/6 simplified model of the MONJU reactor using the commercial code, CFX-13. To better resolve the geometrically complex upper core structure of the M...

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Main Authors: SEOK-KI CHOI, TAE-HO LEE, YEONG-IL KIM, DOHEE HAHN
Format: Article
Language:English
Published: Elsevier 2013-04-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573315300619
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spelling doaj-3a35741e98f94a67a43777e0a4b544d72020-11-25T01:06:12ZengElsevierNuclear Engineering and Technology1738-57332013-04-0145219120210.5516/NET.02.2012.050NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTORSEOK-KI CHOI0TAE-HO LEE1YEONG-IL KIM2DOHEE HAHN3Fast Reactor Design Division, 989-111 Daedeokdaero, Yuseong-gu, Daejeon, 305-353, KoreaFast Reactor Design Division, 989-111 Daedeokdaero, Yuseong-gu, Daejeon, 305-353, KoreaFast Reactor Design Division, 989-111 Daedeokdaero, Yuseong-gu, Daejeon, 305-353, KoreaFuture Nuclear Energy System Research Laboratory, Korea Atomic Energy Research Institute, 989-111 Daedeokdaero, Yuseong-gu, Daejeon, 305-353, KoreaA numerical analysis of thermal stratification in the upper plenum of the MONJU fast breeder reactor was performed. Calculations were performed for a 1/6 simplified model of the MONJU reactor using the commercial code, CFX-13. To better resolve the geometrically complex upper core structure of the MONJU reactor, the porous media approach was adopted for the simulation. First, a steady state solution was obtained and the transient solutions were then obtained for the turbine trip test conducted in December 1995. The time dependent inlet conditions for the mass flow rate and temperature were provided by JAEA. Good agreement with the experimental data was observed for steady state solution. The numerical solution of the transient analysis shows the formation of thermal stratification within the upper plenum of the reactor vessel during the turbine trip test. The temporal variations of temperature were predicted accurately by the present method in the initial rapid coastdown period (∼300 seconds). However, transient numerical solutions show a faster thermal mixing than that observed in the experiment after the initial coastdown period. A nearly homogenization of the temperature field in the upper plenum is predicted after about 900 seconds, which is a much shorter-term thermal stratification than the experimental data indicates. This discrepancy may be due to the shortcoming of the turbulence models available in the CFX-13 code for a natural convection flow with thermal stratification.http://www.sciencedirect.com/science/article/pii/S1738573315300619MONJU Fast ReactorThermal StratificationPorous Media ApproachComputational Fluid Dynamics
collection DOAJ
language English
format Article
sources DOAJ
author SEOK-KI CHOI
TAE-HO LEE
YEONG-IL KIM
DOHEE HAHN
spellingShingle SEOK-KI CHOI
TAE-HO LEE
YEONG-IL KIM
DOHEE HAHN
NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
Nuclear Engineering and Technology
MONJU Fast Reactor
Thermal Stratification
Porous Media Approach
Computational Fluid Dynamics
author_facet SEOK-KI CHOI
TAE-HO LEE
YEONG-IL KIM
DOHEE HAHN
author_sort SEOK-KI CHOI
title NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
title_short NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
title_full NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
title_fullStr NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
title_full_unstemmed NUMERICAL ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST REACTOR
title_sort numerical analysis of thermal stratification in the upper plenum of the monju fast reactor
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2013-04-01
description A numerical analysis of thermal stratification in the upper plenum of the MONJU fast breeder reactor was performed. Calculations were performed for a 1/6 simplified model of the MONJU reactor using the commercial code, CFX-13. To better resolve the geometrically complex upper core structure of the MONJU reactor, the porous media approach was adopted for the simulation. First, a steady state solution was obtained and the transient solutions were then obtained for the turbine trip test conducted in December 1995. The time dependent inlet conditions for the mass flow rate and temperature were provided by JAEA. Good agreement with the experimental data was observed for steady state solution. The numerical solution of the transient analysis shows the formation of thermal stratification within the upper plenum of the reactor vessel during the turbine trip test. The temporal variations of temperature were predicted accurately by the present method in the initial rapid coastdown period (∼300 seconds). However, transient numerical solutions show a faster thermal mixing than that observed in the experiment after the initial coastdown period. A nearly homogenization of the temperature field in the upper plenum is predicted after about 900 seconds, which is a much shorter-term thermal stratification than the experimental data indicates. This discrepancy may be due to the shortcoming of the turbulence models available in the CFX-13 code for a natural convection flow with thermal stratification.
topic MONJU Fast Reactor
Thermal Stratification
Porous Media Approach
Computational Fluid Dynamics
url http://www.sciencedirect.com/science/article/pii/S1738573315300619
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