Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation

The steady-state irradiation test for fuel assemblies is a key aspect of nuclear reactor fuel development, for revealing irradiation resistance and verifying the safety of new fuel assemblies before engineering application. The impact of low parameter conditions on the heat transfer capacity of main...

Full description

Saved in:
Bibliographic Details
Main Authors: Junping Si, Guang Zhao, Yun Wang, Mingyan Tong, Jinkang Cheng, Jin Lei, Hongwei Wu, Yueyan Song, Yongqiang Li, Yong Luo
Format: Article
Language:English
Published: Elsevier 2025-08-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X25005362
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849729503697305600
author Junping Si
Guang Zhao
Yun Wang
Mingyan Tong
Jinkang Cheng
Jin Lei
Hongwei Wu
Yueyan Song
Yongqiang Li
Yong Luo
author_facet Junping Si
Guang Zhao
Yun Wang
Mingyan Tong
Jinkang Cheng
Jin Lei
Hongwei Wu
Yueyan Song
Yongqiang Li
Yong Luo
author_sort Junping Si
collection DOAJ
description The steady-state irradiation test for fuel assemblies is a key aspect of nuclear reactor fuel development, for revealing irradiation resistance and verifying the safety of new fuel assemblies before engineering application. The impact of low parameter conditions on the heat transfer capacity of main heat exchangers in the pressurized high-temperature water test loop was studied. A segmented fitting method for determining flow turning points was established, and proposals for series-parallel configurations and new regenerative heat exchanger designs were presented. It is shown that the total heat exchange power of two main heat exchangers operating in parallel is not always greater than that of a single unit. There exists a flow turning point, and above this point, operating the two main heat exchangers in parallel is beneficial. Through segmented fitting, the flow turning points at different inlet water temperatures can be obtained. The average difference in turning points obtained from fitting and calculations is only 0.6 %, with a corresponding average power deviation of 1.8 %. Besides, for low parameter operating conditions, the issues of insufficient heat exchange power can be addressed by using a series connection of the main heat exchangers and adjusting the heat exchange area of the regeneration section.
format Article
id doaj-art-e471985aa32f42bdbb1e8a6b11d4f087
institution DOAJ
issn 2214-157X
language English
publishDate 2025-08-01
publisher Elsevier
record_format Article
series Case Studies in Thermal Engineering
spelling doaj-art-e471985aa32f42bdbb1e8a6b11d4f0872025-08-20T03:09:12ZengElsevierCase Studies in Thermal Engineering2214-157X2025-08-017210627610.1016/j.csite.2025.106276Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiationJunping Si0Guang Zhao1Yun Wang2Mingyan Tong3Jinkang Cheng4Jin Lei5Hongwei Wu6Yueyan Song7Yongqiang Li8Yong Luo9Corresponding author. Reactor operation and application research Sub-institute of Nuclear Power Institute of ChinaNo.328, Section 1, Changshun Avenue, Shuangliu District, Chengdu, Sichuan Province, China.; Reactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaCorresponding author. Reactor operation and application research Sub-institute of Nuclear Power Institute of China, No.328, Section 1, Changshun Avenue, Shuangliu District, Chengdu, Sichuan Province, China.; Reactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaReactor operation and application research Sub-institute of Nuclear Power Institute of China, Chengdu, 610213, ChinaThe steady-state irradiation test for fuel assemblies is a key aspect of nuclear reactor fuel development, for revealing irradiation resistance and verifying the safety of new fuel assemblies before engineering application. The impact of low parameter conditions on the heat transfer capacity of main heat exchangers in the pressurized high-temperature water test loop was studied. A segmented fitting method for determining flow turning points was established, and proposals for series-parallel configurations and new regenerative heat exchanger designs were presented. It is shown that the total heat exchange power of two main heat exchangers operating in parallel is not always greater than that of a single unit. There exists a flow turning point, and above this point, operating the two main heat exchangers in parallel is beneficial. Through segmented fitting, the flow turning points at different inlet water temperatures can be obtained. The average difference in turning points obtained from fitting and calculations is only 0.6 %, with a corresponding average power deviation of 1.8 %. Besides, for low parameter operating conditions, the issues of insufficient heat exchange power can be addressed by using a series connection of the main heat exchangers and adjusting the heat exchange area of the regeneration section.http://www.sciencedirect.com/science/article/pii/S2214157X25005362Heat exchange capabilityPressurized water test loopLow parameter conditionsFuel assembly steady-state irradiation
spellingShingle Junping Si
Guang Zhao
Yun Wang
Mingyan Tong
Jinkang Cheng
Jin Lei
Hongwei Wu
Yueyan Song
Yongqiang Li
Yong Luo
Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
Case Studies in Thermal Engineering
Heat exchange capability
Pressurized water test loop
Low parameter conditions
Fuel assembly steady-state irradiation
title Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
title_full Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
title_fullStr Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
title_full_unstemmed Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
title_short Heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
title_sort heat exchange capability of main heat exchangers in pressurized water test loop under low parameter conditions during fuel assembly irradiation
topic Heat exchange capability
Pressurized water test loop
Low parameter conditions
Fuel assembly steady-state irradiation
url http://www.sciencedirect.com/science/article/pii/S2214157X25005362
work_keys_str_mv AT junpingsi heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT guangzhao heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT yunwang heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT mingyantong heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT jinkangcheng heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT jinlei heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT hongweiwu heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT yueyansong heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT yongqiangli heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation
AT yongluo heatexchangecapabilityofmainheatexchangersinpressurizedwatertestloopunderlowparameterconditionsduringfuelassemblyirradiation