Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition

The supercritical carbon dioxide (S-CO2) cycle is regarded as a potential option for the next generation power conversion system. Concentrated solar power (CSP) plant is one of the promising scenarios to adopt the S-CO2 cycle due to the appealing thermal efficiency and the ability to integrate therm...

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Main Authors: Ma Yuegeng, Morozyuk Tatiana, Liu Jiping
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/63/e3sconf_rdpe2019_01020.pdf
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spelling doaj-5e0abcdca3504beb82a62211182e8c3b2021-04-02T11:30:15ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011370102010.1051/e3sconf/201913701020e3sconf_rdpe2019_01020Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design conditionMa YuegengMorozyuk TatianaLiu JipingThe supercritical carbon dioxide (S-CO2) cycle is regarded as a potential option for the next generation power conversion system. Concentrated solar power (CSP) plant is one of the promising scenarios to adopt the S-CO2 cycle due to the appealing thermal efficiency and the ability to integrate thermal storage and dry cooling. Among various cycle configurations of S-CO2 cycle, the recompression S-CO2 cycle with intercooled main compressor is one of the optimal choices that can provide superior efficiency and a large enough temperature differential for thermal input, which together contribute to the minimization of the overall levelized cost of electricity (LCOE) of the whole CSP plant. The off-design performance and the associated control scheme have important effects on the CSP plant. This paper develops an off-design model for the recompression S-CO2 cycle with intercooled main compressor for the commercialized hundred-megawatt CSP plant. The effects of different off-design conditions on cycle performance are first evaluated. Different operating strategies regarding the control of cycle maximal pressure and preventing abnormal compressor conditions during off-design operation are then presented and compared. This work is expected to provide knowledge for the optimal control of recompression S-CO2 cycle with intercooled main compressor during the real operation of the CSP plant.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/63/e3sconf_rdpe2019_01020.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Ma Yuegeng
Morozyuk Tatiana
Liu Jiping
spellingShingle Ma Yuegeng
Morozyuk Tatiana
Liu Jiping
Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
E3S Web of Conferences
author_facet Ma Yuegeng
Morozyuk Tatiana
Liu Jiping
author_sort Ma Yuegeng
title Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
title_short Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
title_full Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
title_fullStr Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
title_full_unstemmed Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition
title_sort development of operation strategy for recompression supercritical co2 cycle with intercooled main compressor under off-design condition
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The supercritical carbon dioxide (S-CO2) cycle is regarded as a potential option for the next generation power conversion system. Concentrated solar power (CSP) plant is one of the promising scenarios to adopt the S-CO2 cycle due to the appealing thermal efficiency and the ability to integrate thermal storage and dry cooling. Among various cycle configurations of S-CO2 cycle, the recompression S-CO2 cycle with intercooled main compressor is one of the optimal choices that can provide superior efficiency and a large enough temperature differential for thermal input, which together contribute to the minimization of the overall levelized cost of electricity (LCOE) of the whole CSP plant. The off-design performance and the associated control scheme have important effects on the CSP plant. This paper develops an off-design model for the recompression S-CO2 cycle with intercooled main compressor for the commercialized hundred-megawatt CSP plant. The effects of different off-design conditions on cycle performance are first evaluated. Different operating strategies regarding the control of cycle maximal pressure and preventing abnormal compressor conditions during off-design operation are then presented and compared. This work is expected to provide knowledge for the optimal control of recompression S-CO2 cycle with intercooled main compressor during the real operation of the CSP plant.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/63/e3sconf_rdpe2019_01020.pdf
work_keys_str_mv AT mayuegeng developmentofoperationstrategyforrecompressionsupercriticalco2cyclewithintercooledmaincompressorunderoffdesigncondition
AT morozyuktatiana developmentofoperationstrategyforrecompressionsupercriticalco2cyclewithintercooledmaincompressorunderoffdesigncondition
AT liujiping developmentofoperationstrategyforrecompressionsupercriticalco2cyclewithintercooledmaincompressorunderoffdesigncondition
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