Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation

The vertically inverted U-tube steam generator (UTSG) is widely used in the pressurized water reactor (PWR). The reverse flow behavior generally exists in some U-tubes of a steam generator (SG) under both single- and two-phase natural circulations (NCs). The behavior increases the flow resistance in...

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Main Authors: Xi Chu, Mingrui Li, Wenzhen Chen, Jianli Hao
Format: Article
Language:English
Published: Elsevier 2020-05-01
Series:Nuclear Engineering and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573319303936
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spelling doaj-57ef8c01c9c24abf901ef238f839727a2020-11-25T01:43:18ZengElsevierNuclear Engineering and Technology1738-57332020-05-01525889896Investigation on reverse flow characteristics in U-tubes under two-phase natural circulationXi Chu0Mingrui Li1Wenzhen Chen2Jianli Hao3College of Nuclear Science and Technology, Naval University of Engineering, Wuhan, 430033, PR ChinaCollege of Nuclear Science and Technology, Naval University of Engineering, Wuhan, 430033, PR ChinaCorresponding author.; College of Nuclear Science and Technology, Naval University of Engineering, Wuhan, 430033, PR ChinaCollege of Nuclear Science and Technology, Naval University of Engineering, Wuhan, 430033, PR ChinaThe vertically inverted U-tube steam generator (UTSG) is widely used in the pressurized water reactor (PWR). The reverse flow behavior generally exists in some U-tubes of a steam generator (SG) under both single- and two-phase natural circulations (NCs). The behavior increases the flow resistance in the primary loop and reduces the heat transfer in the SG. As a consequence, the NC ability as well as the inherent safety of nuclear reactors is faced with severe challenges. The theoretical models for calculating single- and two-phase flow pressure drops in U-tubes are developed and validated in this paper. The two-phase reverse flow characteristics in two types of SGs are investigated base on the theoretical models, and the effects of the U-tube height, bending radius, inlet steam quality and primary side pressure on the behavior are analyzed. The conclusions may provide some promising references for SG optimization to reduce the disadvantageous behavior. It is also of significance to improve the NC ability and ensure the PWR safety during some accidents. Keywords: Two-phase natural circulation, Reverse flow, UTSG, U-tubeshttp://www.sciencedirect.com/science/article/pii/S1738573319303936
collection DOAJ
language English
format Article
sources DOAJ
author Xi Chu
Mingrui Li
Wenzhen Chen
Jianli Hao
spellingShingle Xi Chu
Mingrui Li
Wenzhen Chen
Jianli Hao
Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
Nuclear Engineering and Technology
author_facet Xi Chu
Mingrui Li
Wenzhen Chen
Jianli Hao
author_sort Xi Chu
title Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
title_short Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
title_full Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
title_fullStr Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
title_full_unstemmed Investigation on reverse flow characteristics in U-tubes under two-phase natural circulation
title_sort investigation on reverse flow characteristics in u-tubes under two-phase natural circulation
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2020-05-01
description The vertically inverted U-tube steam generator (UTSG) is widely used in the pressurized water reactor (PWR). The reverse flow behavior generally exists in some U-tubes of a steam generator (SG) under both single- and two-phase natural circulations (NCs). The behavior increases the flow resistance in the primary loop and reduces the heat transfer in the SG. As a consequence, the NC ability as well as the inherent safety of nuclear reactors is faced with severe challenges. The theoretical models for calculating single- and two-phase flow pressure drops in U-tubes are developed and validated in this paper. The two-phase reverse flow characteristics in two types of SGs are investigated base on the theoretical models, and the effects of the U-tube height, bending radius, inlet steam quality and primary side pressure on the behavior are analyzed. The conclusions may provide some promising references for SG optimization to reduce the disadvantageous behavior. It is also of significance to improve the NC ability and ensure the PWR safety during some accidents. Keywords: Two-phase natural circulation, Reverse flow, UTSG, U-tubes
url http://www.sciencedirect.com/science/article/pii/S1738573319303936
work_keys_str_mv AT xichu investigationonreverseflowcharacteristicsinutubesundertwophasenaturalcirculation
AT mingruili investigationonreverseflowcharacteristicsinutubesundertwophasenaturalcirculation
AT wenzhenchen investigationonreverseflowcharacteristicsinutubesundertwophasenaturalcirculation
AT jianlihao investigationonreverseflowcharacteristicsinutubesundertwophasenaturalcirculation
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