Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection
With the rapid development of the economy, the continuously increasing population, and ongoing climate change, the shortage of freshwater resources has become an increasingly important global problem. Seawater desalination technology can effectively alleviate the pressure on freshwater supplies and...
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2019-06-01
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doaj-aa0932410a1a4938877de70d70d8ce6b2021-02-02T07:23:15ZengKeAi Communications Co., Ltd.Global Energy Interconnection2096-51172019-06-0123224234Planning and Design of a Micro energy network for seawater desalination and regional energy interconnectionJiancheng Yu0Dan Wang1Cheng Yao2Peiyu Chen3Bo Liu4State Grid Tianjin Electric Power Company, Hebei District, Tianjin 300010, P.R. ChinaKey Laboratory of Smart Grid of Ministry of Education, Tianjin University, Nankai District, Tianjin 300072, P.R. ChinaState Grid Tianjin Electric Power Company, Hebei District, Tianjin 300010, P.R. ChinaState Grid Tianjin Electric Power Company, Hebei District, Tianjin 300010, P.R. ChinaKey Laboratory of Smart Grid of Ministry of Education, Tianjin University, Nankai District, Tianjin 300072, P.R. ChinaWith the rapid development of the economy, the continuously increasing population, and ongoing climate change, the shortage of freshwater resources has become an increasingly important global problem. Seawater desalination technology can effectively alleviate the pressure on freshwater supplies and has been investigated in many countries. However, the majority of existing projects focus on the research and development of desalination equipment and the use of new technologies and pay less attention to the operation optimization of the desalination process. The micro energy network (MEN) designed in this study is an efficient distributed energy supply system that can be used to simultaneously supply electricity, cooling, heating, and freshwater as photovoltaic power, wind power, combined heat and power (CHP), electric cooling and heating, and a seawater desalination device are integrated into the MEN. In this study, a model for operation optimization of a MEN for seawater desalination was developed and the influences of the electric cooling and heating ratios and the operation optimization of the seawater desalination device were studied with the aim of minimizing the life cycle cost. Based on the results of this study, MENs can reduce the operation cost of desalination devices and improve the efficiency of renewable energy sources. Keywords: Seawater desalination, Micro energy network, Operation optimization, Life cycle costhttp://www.sciencedirect.com/science/article/pii/S209651171930057X |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiancheng Yu Dan Wang Cheng Yao Peiyu Chen Bo Liu |
spellingShingle |
Jiancheng Yu Dan Wang Cheng Yao Peiyu Chen Bo Liu Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection Global Energy Interconnection |
author_facet |
Jiancheng Yu Dan Wang Cheng Yao Peiyu Chen Bo Liu |
author_sort |
Jiancheng Yu |
title |
Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection |
title_short |
Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection |
title_full |
Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection |
title_fullStr |
Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection |
title_full_unstemmed |
Planning and Design of a Micro energy network for seawater desalination and regional energy interconnection |
title_sort |
planning and design of a micro energy network for seawater desalination and regional energy interconnection |
publisher |
KeAi Communications Co., Ltd. |
series |
Global Energy Interconnection |
issn |
2096-5117 |
publishDate |
2019-06-01 |
description |
With the rapid development of the economy, the continuously increasing population, and ongoing climate change, the shortage of freshwater resources has become an increasingly important global problem. Seawater desalination technology can effectively alleviate the pressure on freshwater supplies and has been investigated in many countries. However, the majority of existing projects focus on the research and development of desalination equipment and the use of new technologies and pay less attention to the operation optimization of the desalination process. The micro energy network (MEN) designed in this study is an efficient distributed energy supply system that can be used to simultaneously supply electricity, cooling, heating, and freshwater as photovoltaic power, wind power, combined heat and power (CHP), electric cooling and heating, and a seawater desalination device are integrated into the MEN. In this study, a model for operation optimization of a MEN for seawater desalination was developed and the influences of the electric cooling and heating ratios and the operation optimization of the seawater desalination device were studied with the aim of minimizing the life cycle cost. Based on the results of this study, MENs can reduce the operation cost of desalination devices and improve the efficiency of renewable energy sources. Keywords: Seawater desalination, Micro energy network, Operation optimization, Life cycle cost |
url |
http://www.sciencedirect.com/science/article/pii/S209651171930057X |
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