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Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP)
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Zeitschriftentitel: | Energy Exploration & Exploitation |
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Personen und Körperschaften: | , |
In: | Energy Exploration & Exploitation, 26, 2008, 1, S. 53-70 |
Format: | E-Article |
Sprache: | Englisch |
veröffentlicht: |
SAGE Publications
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Schlagwörter: |
author_facet |
Aras, Haydar Balli, Ozgur Aras, Haydar Balli, Ozgur |
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author |
Aras, Haydar Balli, Ozgur |
spellingShingle |
Aras, Haydar Balli, Ozgur Energy Exploration & Exploitation Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) Energy Engineering and Power Technology Fuel Technology Nuclear Energy and Engineering Renewable Energy, Sustainability and the Environment |
author_sort |
aras, haydar |
spelling |
Aras, Haydar Balli, Ozgur 0144-5987 2048-4054 SAGE Publications Energy Engineering and Power Technology Fuel Technology Nuclear Energy and Engineering Renewable Energy, Sustainability and the Environment http://dx.doi.org/10.1260/014459808784305824 <jats:p> This paper presents the results of exergy and exergoeconomic analyses applied to a combined heat and power system with micro-gas turbine (MGTCHP). Quantative balances of the exergy and exergy cost for each component and for the whole system are carefully considered, while exergy consumption and cost generation within the system are determined. The exergy analysis indicates that the exergetic efficiency of the MGTCHP system is 35.80% with 123 kW (as 99.15 kW-electrical power and 24.46 kW-hot water@363.15 K). On the other hand, the exergoeconomic analysis results show that the unit exergy cost of electrical power and hot water produced by the MGTCHP system are accounted as 26.808 €(GW)<jats:sup>−1</jats:sup> and 7.737 €(GW)<jats:sup>−1</jats:sup>, respectively. </jats:p> Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) Energy Exploration & Exploitation |
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Energy Exploration & Exploitation |
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title |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_unstemmed |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_full |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_fullStr |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_full_unstemmed |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_short |
Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_sort |
exergoeconomic analysis of a combined heat and power system with the micro gas turbine (mgtchp) |
topic |
Energy Engineering and Power Technology Fuel Technology Nuclear Energy and Engineering Renewable Energy, Sustainability and the Environment |
url |
http://dx.doi.org/10.1260/014459808784305824 |
publishDate |
2008 |
physical |
53-70 |
description |
<jats:p> This paper presents the results of exergy and exergoeconomic analyses applied to a combined heat and power system with micro-gas turbine (MGTCHP). Quantative balances of the exergy and exergy cost for each component and for the whole system are carefully considered, while exergy consumption and cost generation within the system are determined. The exergy analysis indicates that the exergetic efficiency of the MGTCHP system is 35.80% with 123 kW (as 99.15 kW-electrical power and 24.46 kW-hot water@363.15 K). On the other hand, the exergoeconomic analysis results show that the unit exergy cost of electrical power and hot water produced by the MGTCHP system are accounted as 26.808 €(GW)<jats:sup>−1</jats:sup> and 7.737 €(GW)<jats:sup>−1</jats:sup>, respectively. </jats:p> |
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author | Aras, Haydar, Balli, Ozgur |
author_facet | Aras, Haydar, Balli, Ozgur, Aras, Haydar, Balli, Ozgur |
author_sort | aras, haydar |
container_issue | 1 |
container_start_page | 53 |
container_title | Energy Exploration & Exploitation |
container_volume | 26 |
description | <jats:p> This paper presents the results of exergy and exergoeconomic analyses applied to a combined heat and power system with micro-gas turbine (MGTCHP). Quantative balances of the exergy and exergy cost for each component and for the whole system are carefully considered, while exergy consumption and cost generation within the system are determined. The exergy analysis indicates that the exergetic efficiency of the MGTCHP system is 35.80% with 123 kW (as 99.15 kW-electrical power and 24.46 kW-hot water@363.15 K). On the other hand, the exergoeconomic analysis results show that the unit exergy cost of electrical power and hot water produced by the MGTCHP system are accounted as 26.808 €(GW)<jats:sup>−1</jats:sup> and 7.737 €(GW)<jats:sup>−1</jats:sup>, respectively. </jats:p> |
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spelling | Aras, Haydar Balli, Ozgur 0144-5987 2048-4054 SAGE Publications Energy Engineering and Power Technology Fuel Technology Nuclear Energy and Engineering Renewable Energy, Sustainability and the Environment http://dx.doi.org/10.1260/014459808784305824 <jats:p> This paper presents the results of exergy and exergoeconomic analyses applied to a combined heat and power system with micro-gas turbine (MGTCHP). Quantative balances of the exergy and exergy cost for each component and for the whole system are carefully considered, while exergy consumption and cost generation within the system are determined. The exergy analysis indicates that the exergetic efficiency of the MGTCHP system is 35.80% with 123 kW (as 99.15 kW-electrical power and 24.46 kW-hot water@363.15 K). On the other hand, the exergoeconomic analysis results show that the unit exergy cost of electrical power and hot water produced by the MGTCHP system are accounted as 26.808 €(GW)<jats:sup>−1</jats:sup> and 7.737 €(GW)<jats:sup>−1</jats:sup>, respectively. </jats:p> Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) Energy Exploration & Exploitation |
spellingShingle | Aras, Haydar, Balli, Ozgur, Energy Exploration & Exploitation, Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP), Energy Engineering and Power Technology, Fuel Technology, Nuclear Energy and Engineering, Renewable Energy, Sustainability and the Environment |
title | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_full | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_fullStr | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_full_unstemmed | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_short | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
title_sort | exergoeconomic analysis of a combined heat and power system with the micro gas turbine (mgtchp) |
title_unstemmed | Exergoeconomic Analysis of a Combined Heat and Power System with the Micro Gas Turbine (MGTCHP) |
topic | Energy Engineering and Power Technology, Fuel Technology, Nuclear Energy and Engineering, Renewable Energy, Sustainability and the Environment |
url | http://dx.doi.org/10.1260/014459808784305824 |