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Exergy analysis of a hybrid micro gas turbine fuel cell system based on existing components

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Autor
Bakalis, D. P.; Stamatis, A. G.
Datum
2012
DOI
10.1115/GT2012-69258
Schlagwort
Exergetic performance
Exergy destructions
Fuel cell generators
Micro gas turbines
Part load operation
Performance parameters
Thermodynamic inefficiencies
Tubular solid oxide fuel cells
Blowers
Environmental impact
Exergy
Exhibitions
Hybrid systems
Gas turbines
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Zusammenfassung
A hybrid system based on an existing recuperated micro-turbine and a pre-commercially available high temperature tubular solid oxide fuel cell is modeled in order to study its performance. Individual models are developed for the micro-turbine and fuel cell generator and merged into a single one in order to set up the hybrid system. The model utilizes performance maps for the compressor and turbine components for the part load operation. The full and partial load exergetic performance is studied and the amounts of exergy destruction and efficiency of each hybrid system component are presented, in order to evaluate the irreversibilities and thermodynamic inefficiencies. Moreover, the effects of various performance parameters such as fuel cell stack temperature and fuel utilization factor are investigated. Based on the available results, suggestions are given in order to reduce the overall system irreversibility. Finally, the environmental impact of the hybrid system operation is evaluated. Copyright © 2012 by ASME.
URI
http://hdl.handle.net/11615/26102
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