Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus

[Introduction] The fuel cell distributed generation technology is an important application direction to adapt to the future development trend of low-carbon, clean and high-efficiency energy. There are few domestic fuel cell power station projects , and there is a lack of actual project experience ac...

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Main Authors: Zhuoyan LI, Liping DUAN, Shaohua LI, Jing FENG
Format: Article
Language:English
Published: Energy Observer Magazine Co., Ltd. 2022-12-01
Series:南方能源建设
Subjects:
Online Access:https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.04.010
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author Zhuoyan LI
Liping DUAN
Shaohua LI
Jing FENG
author_facet Zhuoyan LI
Liping DUAN
Shaohua LI
Jing FENG
author_sort Zhuoyan LI
collection DOAJ
description [Introduction] The fuel cell distributed generation technology is an important application direction to adapt to the future development trend of low-carbon, clean and high-efficiency energy. There are few domestic fuel cell power station projects , and there is a lack of actual project experience accumulation. In order to promote the application of fuel cell distributed power station technology, the research outlined the current application status at home and abroad, summarized the advantages and disadvantages of high temperature fuel cells, investigated domestic fuel cell construction and application cases, and established solid oxide fuel cell (SOFC) and molten carbonate fuel cell (MCFC) power generation system processes. [Method] After literature research and field research, two fuel cell distributed generation technologies suitable for the construction of large-scale power stations were identified. Chemical simulation software AspenPlus was used to establish the process model, electrochemical model and energy analysis model for the fuel cell system, and the performance simulation analysis of the system was carried out. [Result] The analysis results show that they are consistent with the actual operation results and the system performance trend predicted by the analysis is consistent with the existing research. [Conclusion] The simulation method can be used in the research of MW-level high-temperature fuel cell distributed generation system, and can provide data support for expanding the application scale of fuel cells.
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spelling doaj.art-fd175ce9df034e13a6413895a79c73152023-03-29T05:55:57ZengEnergy Observer Magazine Co., Ltd.南方能源建设2095-86762022-12-0194788610.16516/j.gedi.issn2095-8676.2022.04.0102022-04-009Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlusZhuoyan LI0Liping DUAN1Shaohua LI2Jing FENG3North China Power Engineering Co., Ltd. of China Electric Power Engineering Consulting Group, Beijing 100120, ChinaNorth China Power Engineering Co., Ltd. of China Electric Power Engineering Consulting Group, Beijing 100120, ChinaNorth China Power Engineering Co., Ltd. of China Electric Power Engineering Consulting Group, Beijing 100120, ChinaNorth China Power Engineering Co., Ltd. of China Electric Power Engineering Consulting Group, Beijing 100120, China[Introduction] The fuel cell distributed generation technology is an important application direction to adapt to the future development trend of low-carbon, clean and high-efficiency energy. There are few domestic fuel cell power station projects , and there is a lack of actual project experience accumulation. In order to promote the application of fuel cell distributed power station technology, the research outlined the current application status at home and abroad, summarized the advantages and disadvantages of high temperature fuel cells, investigated domestic fuel cell construction and application cases, and established solid oxide fuel cell (SOFC) and molten carbonate fuel cell (MCFC) power generation system processes. [Method] After literature research and field research, two fuel cell distributed generation technologies suitable for the construction of large-scale power stations were identified. Chemical simulation software AspenPlus was used to establish the process model, electrochemical model and energy analysis model for the fuel cell system, and the performance simulation analysis of the system was carried out. [Result] The analysis results show that they are consistent with the actual operation results and the system performance trend predicted by the analysis is consistent with the existing research. [Conclusion] The simulation method can be used in the research of MW-level high-temperature fuel cell distributed generation system, and can provide data support for expanding the application scale of fuel cells.https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.04.010distributed generationfuel cellsimulation modelsolid oxide fuel cell (sofc)molten carbonate fuel cell (mcfc)
spellingShingle Zhuoyan LI
Liping DUAN
Shaohua LI
Jing FENG
Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
南方能源建设
distributed generation
fuel cell
simulation model
solid oxide fuel cell (sofc)
molten carbonate fuel cell (mcfc)
title Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
title_full Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
title_fullStr Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
title_full_unstemmed Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
title_short Modeling and Simulation Analysis of MW-Level Fuel Cell Distributed Generation System Based on AspenPlus
title_sort modeling and simulation analysis of mw level fuel cell distributed generation system based on aspenplus
topic distributed generation
fuel cell
simulation model
solid oxide fuel cell (sofc)
molten carbonate fuel cell (mcfc)
url https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2022.04.010
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AT lipingduan modelingandsimulationanalysisofmwlevelfuelcelldistributedgenerationsystembasedonaspenplus
AT shaohuali modelingandsimulationanalysisofmwlevelfuelcelldistributedgenerationsystembasedonaspenplus
AT jingfeng modelingandsimulationanalysisofmwlevelfuelcelldistributedgenerationsystembasedonaspenplus