Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses

LNG corrugated hoses have better flexible mechanical properties and compliance. However, due to the influence of its outline structure and the large heat transfer coefficient, large heat loss is caused during LNG transportation, with the transportation efficiency reduced. Therefore, the flow and hea...

Full description

Bibliographic Details
Main Authors: YANG Tai-hong, LIU Jun-peng, WU Chang-xu
Format: Article
Language:zho
Published: Editorial Office of Oil & Gas Storage and Transportation 2023-12-01
Series:You-qi chuyun
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.12.011
_version_ 1797208373444214784
author YANG Tai-hong
LIU Jun-peng
WU Chang-xu
author_facet YANG Tai-hong
LIU Jun-peng
WU Chang-xu
author_sort YANG Tai-hong
collection DOAJ
description LNG corrugated hoses have better flexible mechanical properties and compliance. However, due to the influence of its outline structure and the large heat transfer coefficient, large heat loss is caused during LNG transportation, with the transportation efficiency reduced. Therefore, the flow and heat transfer characteristics of LNG in the plain tube and the corrugated hoses with 5 types of different structural parameters were analyzed with the numerical simulation method. Meanwhile, the influence laws of the corrugation depth,corrugation pitch and Reynolds number on the heat transfer characteristics of the hoses were explored, and the heat transfer characteristics of the hoses were characterized with the thermal performance evaluation criterion(PEC). The results show that: The corrugated hoses have higher Nusselt number, greater friction coefficient and better heat transfer characteristics than the plain tubes. The Nusselt number in the corrugated hoses increases with the increase of Reynolds number, while the friction coefficient decreases with the increase of Reynolds number and becomes stable at high Reynolds number. Under the same Reynolds number, the Nusselt number of the corrugated hoses increases with the increase of the corrugation depth, but decreases with the increase of the corrugation pitch. Besides, the friction coefficient is proportional to the change of the corrugation depth and pitch, and the corrugation depth has the greatest influence. Generally, the research results could provide theoretical guidance for the engineering application and the structural optimization design of LNG cryogenic corrugated hoses.
first_indexed 2024-04-24T09:37:46Z
format Article
id doaj.art-909443f3420c49969c38c1b769a0d6f0
institution Directory Open Access Journal
issn 1000-8241
language zho
last_indexed 2024-04-24T09:37:46Z
publishDate 2023-12-01
publisher Editorial Office of Oil & Gas Storage and Transportation
record_format Article
series You-qi chuyun
spelling doaj.art-909443f3420c49969c38c1b769a0d6f02024-04-15T08:55:06ZzhoEditorial Office of Oil & Gas Storage and TransportationYou-qi chuyun1000-82412023-12-0142121410141810.6047/j.issn.1000-8241.2023.12.01120231211Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hosesYANG Tai-hong0LIU Jun-peng1WU Chang-xu2College of Safety and Ocean Engineering, China University of Petroleum (Beijing)College of Safety and Ocean Engineering, China University of Petroleum (Beijing)College of Safety and Ocean Engineering, China University of Petroleum (Beijing)LNG corrugated hoses have better flexible mechanical properties and compliance. However, due to the influence of its outline structure and the large heat transfer coefficient, large heat loss is caused during LNG transportation, with the transportation efficiency reduced. Therefore, the flow and heat transfer characteristics of LNG in the plain tube and the corrugated hoses with 5 types of different structural parameters were analyzed with the numerical simulation method. Meanwhile, the influence laws of the corrugation depth,corrugation pitch and Reynolds number on the heat transfer characteristics of the hoses were explored, and the heat transfer characteristics of the hoses were characterized with the thermal performance evaluation criterion(PEC). The results show that: The corrugated hoses have higher Nusselt number, greater friction coefficient and better heat transfer characteristics than the plain tubes. The Nusselt number in the corrugated hoses increases with the increase of Reynolds number, while the friction coefficient decreases with the increase of Reynolds number and becomes stable at high Reynolds number. Under the same Reynolds number, the Nusselt number of the corrugated hoses increases with the increase of the corrugation depth, but decreases with the increase of the corrugation pitch. Besides, the friction coefficient is proportional to the change of the corrugation depth and pitch, and the corrugation depth has the greatest influence. Generally, the research results could provide theoretical guidance for the engineering application and the structural optimization design of LNG cryogenic corrugated hoses.http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.12.011lngcryogenic corrugated hoseplain tubeheat transfer performanceflow characteristicsnumerical simulation
spellingShingle YANG Tai-hong
LIU Jun-peng
WU Chang-xu
Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
You-qi chuyun
lng
cryogenic corrugated hose
plain tube
heat transfer performance
flow characteristics
numerical simulation
title Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
title_full Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
title_fullStr Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
title_full_unstemmed Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
title_short Numerical simulation of flow and heat transfer characteristics of LNG cryogenic corrugated hoses
title_sort numerical simulation of flow and heat transfer characteristics of lng cryogenic corrugated hoses
topic lng
cryogenic corrugated hose
plain tube
heat transfer performance
flow characteristics
numerical simulation
url http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.12.011
work_keys_str_mv AT yangtaihong numericalsimulationofflowandheattransfercharacteristicsoflngcryogeniccorrugatedhoses
AT liujunpeng numericalsimulationofflowandheattransfercharacteristicsoflngcryogeniccorrugatedhoses
AT wuchangxu numericalsimulationofflowandheattransfercharacteristicsoflngcryogeniccorrugatedhoses