Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling

Investigation on non uniform flow behavior among U-tube in steam generator during natural circulation cooling has been conducted using RELAP5. The investigation is performed by modeling the steam generator into multi channel models, i.e. 9-tubes model. Two situations are implemented, high pressure a...

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Main Authors: Susyadi, T. Yonomoto
Format: Article
Language:English
Published: Center for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN) 2007-07-01
Series:Atom Indonesia
Subjects:
Online Access:http://aij.batan.go.id/index.php/aij/article/view/110
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spelling doaj-62edfcd3f0654b6d81981754f79e861d2020-11-25T00:06:16ZengCenter for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN)Atom Indonesia0126-15680126-15682007-07-01332103116http://dx.doi.org/10.17146/aij.2007.111Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation CoolingSusyadi0T. Yonomoto1Center for Reactor Technology and Nuclear Safety - BATAN Puspiptek, Tangerang 15310, Indonesia Tokai-mura, Naka-Gun, Ibaraki., 319-1195 - JAEA, JapanInvestigation on non uniform flow behavior among U-tube in steam generator during natural circulation cooling has been conducted using RELAP5. The investigation is performed by modeling the steam generator into multi channel models, i.e. 9-tubes model. Two situations are implemented, high pressure and low pressure cases. Using partial model, the calculation simulates situation similar to the natural circulation test performed in LSTF. The imposed boundary conditions are flow rate, quality, pressure of the primary side, feed water temperature, steam generator liquid level, and pressure in the secondary side. Calculation result shows that simulation using model with nine tubes is capable to capture important non-uniform phenomena such as reverse flow, fill-and-dump, and stagnant vertical stratification. As a result of appropriate simulation of non uniform flow, the calculated steam generator outlet flow in the primary loop is stable as observed in the experiments. The results also clearly indicate the importance of simulation of non-uniform flow in predicting both the flow stability and heat transfer between the primary and secondary side. In addition, the history of transient plays important role on the selection of the flow distribution among tubes. © 2007 Atom Indonesia. All rights reservedhttp://aij.batan.go.id/index.php/aij/article/view/110Natural circulationRELAP5Non-uniform flowSteam generatorSimulation
collection DOAJ
language English
format Article
sources DOAJ
author Susyadi
T. Yonomoto
spellingShingle Susyadi
T. Yonomoto
Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
Atom Indonesia
Natural circulation
RELAP5
Non-uniform flow
Steam generator
Simulation
author_facet Susyadi
T. Yonomoto
author_sort Susyadi
title Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
title_short Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
title_full Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
title_fullStr Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
title_full_unstemmed Analysis on Non-Uniform Flow in Steam Generator During Steady State Natural Circulation Cooling
title_sort analysis on non-uniform flow in steam generator during steady state natural circulation cooling
publisher Center for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN)
series Atom Indonesia
issn 0126-1568
0126-1568
publishDate 2007-07-01
description Investigation on non uniform flow behavior among U-tube in steam generator during natural circulation cooling has been conducted using RELAP5. The investigation is performed by modeling the steam generator into multi channel models, i.e. 9-tubes model. Two situations are implemented, high pressure and low pressure cases. Using partial model, the calculation simulates situation similar to the natural circulation test performed in LSTF. The imposed boundary conditions are flow rate, quality, pressure of the primary side, feed water temperature, steam generator liquid level, and pressure in the secondary side. Calculation result shows that simulation using model with nine tubes is capable to capture important non-uniform phenomena such as reverse flow, fill-and-dump, and stagnant vertical stratification. As a result of appropriate simulation of non uniform flow, the calculated steam generator outlet flow in the primary loop is stable as observed in the experiments. The results also clearly indicate the importance of simulation of non-uniform flow in predicting both the flow stability and heat transfer between the primary and secondary side. In addition, the history of transient plays important role on the selection of the flow distribution among tubes. © 2007 Atom Indonesia. All rights reserved
topic Natural circulation
RELAP5
Non-uniform flow
Steam generator
Simulation
url http://aij.batan.go.id/index.php/aij/article/view/110
work_keys_str_mv AT susyadi analysisonnonuniformflowinsteamgeneratorduringsteadystatenaturalcirculationcooling
AT tyonomoto analysisonnonuniformflowinsteamgeneratorduringsteadystatenaturalcirculationcooling
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