Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor

The small PWR has been paid more and more attention due to its diversity of application and flexibility in the site selection. However, the large core power density, the small containment space and the rapid accident progress characteristics make it difficult to control the containment pressure like...

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Main Authors: Xinxing Liu, Xiangjie Qi, Nan Zhang, Zhaoming Meng, Zhongning Sun
Format: Article
Language:English
Published: Elsevier 2021-03-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573320308615
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spelling doaj-deabb6d6f45c4e00ab16202f402fb8972021-03-03T04:20:58ZengElsevierNuclear Engineering and Technology1738-57332021-03-01533793803Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactorXinxing Liu0Xiangjie Qi1Nan Zhang2Zhaoming Meng3Zhongning Sun4Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Harbin, Heilongjiang 150001, ChinaFundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Harbin, Heilongjiang 150001, ChinaFundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Harbin, Heilongjiang 150001, ChinaCorresponding author.; Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Harbin, Heilongjiang 150001, ChinaFundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Harbin, Heilongjiang 150001, ChinaThe small PWR has been paid more and more attention due to its diversity of application and flexibility in the site selection. However, the large core power density, the small containment space and the rapid accident progress characteristics make it difficult to control the containment pressure like the traditional PWR during the LOCA. The pressure suppression system has been used by the BWR since the early design, which is a suitable technique that can be applied to the small PWR. Since the configuration and operating conditions are different from the BWR, the pressure suppression system should be redesigned for the small PWR. Conducting the experiments on the scale down test facility is a good choice to reproduce the prototypical phenomena in the test facility, which is both economical and reasonable. A systematic scaling method referring to the H2TS method was proposed to determine the geometrical and thermohydraulic parameters of the pressure suppression containment response test facility for the small PWR conceptual design. The containment and the pressure suppression system related thermohydraulic phenomena were analyzed with top-down and bottom-up scaling methods. A set of the scaling criteria were obtained, through which the main parameters of the test facility can be determined.http://www.sciencedirect.com/science/article/pii/S1738573320308615Scaling analysisSmall PWRTop-downBottom-upH2TS
collection DOAJ
language English
format Article
sources DOAJ
author Xinxing Liu
Xiangjie Qi
Nan Zhang
Zhaoming Meng
Zhongning Sun
spellingShingle Xinxing Liu
Xiangjie Qi
Nan Zhang
Zhaoming Meng
Zhongning Sun
Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
Nuclear Engineering and Technology
Scaling analysis
Small PWR
Top-down
Bottom-up
H2TS
author_facet Xinxing Liu
Xiangjie Qi
Nan Zhang
Zhaoming Meng
Zhongning Sun
author_sort Xinxing Liu
title Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
title_short Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
title_full Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
title_fullStr Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
title_full_unstemmed Scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
title_sort scaling analysis of the pressure suppression containment test facility for the small pressurized water reactor
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2021-03-01
description The small PWR has been paid more and more attention due to its diversity of application and flexibility in the site selection. However, the large core power density, the small containment space and the rapid accident progress characteristics make it difficult to control the containment pressure like the traditional PWR during the LOCA. The pressure suppression system has been used by the BWR since the early design, which is a suitable technique that can be applied to the small PWR. Since the configuration and operating conditions are different from the BWR, the pressure suppression system should be redesigned for the small PWR. Conducting the experiments on the scale down test facility is a good choice to reproduce the prototypical phenomena in the test facility, which is both economical and reasonable. A systematic scaling method referring to the H2TS method was proposed to determine the geometrical and thermohydraulic parameters of the pressure suppression containment response test facility for the small PWR conceptual design. The containment and the pressure suppression system related thermohydraulic phenomena were analyzed with top-down and bottom-up scaling methods. A set of the scaling criteria were obtained, through which the main parameters of the test facility can be determined.
topic Scaling analysis
Small PWR
Top-down
Bottom-up
H2TS
url http://www.sciencedirect.com/science/article/pii/S1738573320308615
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AT xiangjieqi scalinganalysisofthepressuresuppressioncontainmenttestfacilityforthesmallpressurizedwaterreactor
AT nanzhang scalinganalysisofthepressuresuppressioncontainmenttestfacilityforthesmallpressurizedwaterreactor
AT zhaomingmeng scalinganalysisofthepressuresuppressioncontainmenttestfacilityforthesmallpressurizedwaterreactor
AT zhongningsun scalinganalysisofthepressuresuppressioncontainmenttestfacilityforthesmallpressurizedwaterreactor
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