Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant

[Introduction] Liquefied natural gas (LNG) terminal usually consume a lot of water resources and electric power to gasify and transport the gas. Reasonable selection of water intake and drainage schemes is of great significance to save energy and reduce carbon emissions. [Method] In order to make fu...

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Main Authors: FENG Daorong, LIU Yuanxiang, DENG Xiaoming, JIANG Huajun
Format: Article
Language:English
Published: Energy Observer Magazine Co., Ltd. 2022-05-01
Series:南方能源建设
Subjects:
Online Access:https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.S1.006
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author FENG Daorong
LIU Yuanxiang
DENG Xiaoming
JIANG Huajun
author_facet FENG Daorong
LIU Yuanxiang
DENG Xiaoming
JIANG Huajun
author_sort FENG Daorong
collection DOAJ
description [Introduction] Liquefied natural gas (LNG) terminal usually consume a lot of water resources and electric power to gasify and transport the gas. Reasonable selection of water intake and drainage schemes is of great significance to save energy and reduce carbon emissions. [Method] In order to make full use of the thermal drainage resources from the neighboring existing power plants, three different water intake and drainage schemes were proposed: Simultaneously draw and drain water from the ocean, simultaneously draw and drain water from the power plant open channel, and draw water from the power plant open channel and drain water to the ocean. All water intake and drainage schemes were compared and discussed on their engineering construction schemes, economic, and social benefits, etc. [Result] The results of the comparison and selection of the schemes show that compared with the traditional scheme of taking and drainage water from the ocean, those of taking water from the power plant could reduce the infrastructure investment by about 5.6%, reduce the water consumption of open rack vaporizer (ORV) by about 41%, and save about 5.471 million kWh of annual operating power consumption, which was equivalent to reducing carbon dioxide emissions from 1 000 MW ultra-supercritical generator sets by at least 3 548.3 tons per year. In addition, this water intake and drainage scheme also greatly saves the sea area and reduces the impact of water intake and drainage on marine ecology. [Conclusion] The new water intake and drainage scheme proposed in this study has good social, economic, and environmental benefits and provides some guidance for other projects to fully integrate energy, further improves energy and water conservation, and reduces carbon emissions from LNG terminal.
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spelling doaj.art-badca7bedad44359adc62bcdaef5b1292022-12-22T03:26:47ZengEnergy Observer Magazine Co., Ltd.南方能源建设2095-86762022-05-019S1364210.16516/j.gedi.issn2095-8676.2022.S1.006Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power PlantFENG Daorong0LIU Yuanxiang1DENG Xiaoming2JIANG Huajun3Guangdong Huizhou LNG Co., Ltd., Huizhou 516000, Guangdong, ChinaChina Energy Engineering Group Guangdong Electric Power Design Institute Co., Ltd., Guangzhou 510663, Guangdong, ChinaGuangdong Huizhou LNG Co., Ltd., Huizhou 516000, Guangdong, ChinaGuangdong Huizhou LNG Co., Ltd., Huizhou 516000, Guangdong, China[Introduction] Liquefied natural gas (LNG) terminal usually consume a lot of water resources and electric power to gasify and transport the gas. Reasonable selection of water intake and drainage schemes is of great significance to save energy and reduce carbon emissions. [Method] In order to make full use of the thermal drainage resources from the neighboring existing power plants, three different water intake and drainage schemes were proposed: Simultaneously draw and drain water from the ocean, simultaneously draw and drain water from the power plant open channel, and draw water from the power plant open channel and drain water to the ocean. All water intake and drainage schemes were compared and discussed on their engineering construction schemes, economic, and social benefits, etc. [Result] The results of the comparison and selection of the schemes show that compared with the traditional scheme of taking and drainage water from the ocean, those of taking water from the power plant could reduce the infrastructure investment by about 5.6%, reduce the water consumption of open rack vaporizer (ORV) by about 41%, and save about 5.471 million kWh of annual operating power consumption, which was equivalent to reducing carbon dioxide emissions from 1 000 MW ultra-supercritical generator sets by at least 3 548.3 tons per year. In addition, this water intake and drainage scheme also greatly saves the sea area and reduces the impact of water intake and drainage on marine ecology. [Conclusion] The new water intake and drainage scheme proposed in this study has good social, economic, and environmental benefits and provides some guidance for other projects to fully integrate energy, further improves energy and water conservation, and reduces carbon emissions from LNG terminal.https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.S1.006lng terminalwater intake and drainage engineeringpower plant thermal drainagecirculating water comprehensive utilizationcarbon emission reduction
spellingShingle FENG Daorong
LIU Yuanxiang
DENG Xiaoming
JIANG Huajun
Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
南方能源建设
lng terminal
water intake and drainage engineering
power plant thermal drainage
circulating water comprehensive utilization
carbon emission reduction
title Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
title_full Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
title_fullStr Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
title_full_unstemmed Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
title_short Discussion on the Water Intake and Drainage Schemes of LNG Terminal Using the Thermal Drainage from Power Plant
title_sort discussion on the water intake and drainage schemes of lng terminal using the thermal drainage from power plant
topic lng terminal
water intake and drainage engineering
power plant thermal drainage
circulating water comprehensive utilization
carbon emission reduction
url https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.S1.006
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AT dengxiaoming discussiononthewaterintakeanddrainageschemesoflngterminalusingthethermaldrainagefrompowerplant
AT jianghuajun discussiononthewaterintakeanddrainageschemesoflngterminalusingthethermaldrainagefrompowerplant