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Citation
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HERO ID
6004361
Reference Type
Journal Article
Title
Performance study of a solid oxide fuel cell and gas turbine hybrid system designed for methane operating with non-designed fuels
Author(s)
Li, Y; Weng, Y
Year
2011
Is Peer Reviewed?
Yes
Journal
Journal of Power Sources
ISSN:
0378-7753
Publisher
Elsevier
Volume
196
Issue
8
Page Numbers
3824-3835
DOI
10.1016/j.jpowsour.2011.01.011
Web of Science Id
WOS:000288355100018
URL
https://linkinghub.elsevier.com/retrieve/pii/S0378775311000838
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Abstract
This paper presents an analysis of the fuel flexibility of a methane-based solid oxide fuel cell-gas turbine (SOFC-GT) hybrid system. The simulation models of the system are mathematically defined. Special attention is paid to the development of an SOFC thermodynamic model that allows for the calculation of radial temperature gradients. Based on the simulation model, the new design point of system for new fuels is defined first; the steady-state performance of the system fed by different fuels is then discussed. When the hybrid system operates with hydrogen, the net power output at the new design point will decrease to 70% of the methane, while the design net efficiency will decrease to 55%. Similar to hydrogen, the net output power of the ethanol-fueled system will decrease to 88% of the methane value due to the lower cooling effect of steam reforming. However, the net efficiency can remain at 61% at high level due to increased heat recuperation from exhaust gas. To increase the power output of the hybrid system operating with non-design fuels without changing the system configuration, three different measures are introduced and investigated in this paper. The introduced measures can increase the system net power output operating with hydrogen to 94% of the original value at the cost of a lower efficiency of 45%.
Keywords
Solid oxide fuel cell; Gas turbine; Hybrid system; Ethanol; Hydrogen; Methane
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