Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers

The S-CO2 power cycle has the advantages of compact structure and high energy density, which can be used to recover the waste heat of ship exhaust, thus improving the energy efficiency of ships and reducing emissions. The hybrid heat exchangers with etched plates and fins can be used as the heat tra...

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Main Authors: Wang Jiawei, Sun Yuwei, Lu Mingjian, Yan Xinping
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01082.pdf
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spelling doaj-e313aa4bc2d940e88d33ae924b0693782021-04-02T13:35:41ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011850108210.1051/e3sconf/202018501082e3sconf_iceeb2020_01082Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangersWang JiaweiSun YuweiLu MingjianYan XinpingThe S-CO2 power cycle has the advantages of compact structure and high energy density, which can be used to recover the waste heat of ship exhaust, thus improving the energy efficiency of ships and reducing emissions. The hybrid heat exchangers with etched plates and fins can be used as the heat transfer device of S-CO2 and exhaust, its heat transfer and pressure drop characteristics have a great influence on S- CO2 power cycle performance. In this study, a CFD model of the hybrid heat exchangers was established. The effects of different exhaust inlet temperatures, inlet mass flow rates and inlet pressures on the heat transfer and the pressure drop characteristics were analyzed by Fluent. The results show that the inlet temperatures and inlet mass flow rates of exhaust have a great influence on the heat transfer characteristics of the hybrid heat exchanger. The inlet mass flow rates and inlet pressures of exhaust have a great influence on the pressure drop characteristics of the hybrid heat exchangers. In the design of the hybrid heat exchangers, the status of the exhaust need to be considered to ensure efficient operation of the heat exchangers. The study can provide guidance for the design of the hybrid heat exchangers.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01082.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Wang Jiawei
Sun Yuwei
Lu Mingjian
Yan Xinping
spellingShingle Wang Jiawei
Sun Yuwei
Lu Mingjian
Yan Xinping
Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
E3S Web of Conferences
author_facet Wang Jiawei
Sun Yuwei
Lu Mingjian
Yan Xinping
author_sort Wang Jiawei
title Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
title_short Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
title_full Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
title_fullStr Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
title_full_unstemmed Study on heat transfer and pressure drop characteristics in marine S-CO2 power cycle hybrid heat exchangers
title_sort study on heat transfer and pressure drop characteristics in marine s-co2 power cycle hybrid heat exchangers
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description The S-CO2 power cycle has the advantages of compact structure and high energy density, which can be used to recover the waste heat of ship exhaust, thus improving the energy efficiency of ships and reducing emissions. The hybrid heat exchangers with etched plates and fins can be used as the heat transfer device of S-CO2 and exhaust, its heat transfer and pressure drop characteristics have a great influence on S- CO2 power cycle performance. In this study, a CFD model of the hybrid heat exchangers was established. The effects of different exhaust inlet temperatures, inlet mass flow rates and inlet pressures on the heat transfer and the pressure drop characteristics were analyzed by Fluent. The results show that the inlet temperatures and inlet mass flow rates of exhaust have a great influence on the heat transfer characteristics of the hybrid heat exchanger. The inlet mass flow rates and inlet pressures of exhaust have a great influence on the pressure drop characteristics of the hybrid heat exchangers. In the design of the hybrid heat exchangers, the status of the exhaust need to be considered to ensure efficient operation of the heat exchangers. The study can provide guidance for the design of the hybrid heat exchangers.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01082.pdf
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