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Energy Exploration & Exploitation
Energetic Analyses of the Combined Heat and Power (CHP) System
Energy Engineering and Power Technology
Fuel Technology
Nuclear Energy and Engineering
Renewable Energy, Sustainability and the Environment
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spelling Balli, Ozgur Aras, Haydar 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/10.1260/014459807781036412 <jats:p> This study deals with the energetic analysis of a combined heat and power (CHP) system installed in Eskisehir City of Turkey. The mass and energy balance relations are derived and applied to the components of CHP system and overall CHP system. The performance characteristics of this CHP system are evaluated in terms of energetic aspects. Considering total output energy, the total energy efficiencies (electrical and thermal) of gas turbine cycle, heat recovery steam generator(HRSG), steam cycle and CHP system are 95.3 %, 83.56 %, 76.7 % and 79.3 %, respectively. Based on total useful energy output (excepting the stack gas, waste boiler loss, condenser line, medium pressure steam collector energies), the total useful energy efficiencies of gas turbine cycle, HRSG, steam cycle and CHP system are 82.3 %, 65.2 %, 18.5 % and 40.02 %, respectively. </jats:p> Energetic Analyses of the Combined Heat and Power (CHP) System Energy Exploration & Exploitation
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title Energetic Analyses of the Combined Heat and Power (CHP) System
title_unstemmed Energetic Analyses of the Combined Heat and Power (CHP) System
title_full Energetic Analyses of the Combined Heat and Power (CHP) System
title_fullStr Energetic Analyses of the Combined Heat and Power (CHP) System
title_full_unstemmed Energetic Analyses of the Combined Heat and Power (CHP) System
title_short Energetic Analyses of the Combined Heat and Power (CHP) System
title_sort energetic analyses of the combined heat and power (chp) system
topic Energy Engineering and Power Technology
Fuel Technology
Nuclear Energy and Engineering
Renewable Energy, Sustainability and the Environment
url http://dx.doi.org/10.1260/014459807781036412
publishDate 2007
physical 39-62
description <jats:p> This study deals with the energetic analysis of a combined heat and power (CHP) system installed in Eskisehir City of Turkey. The mass and energy balance relations are derived and applied to the components of CHP system and overall CHP system. The performance characteristics of this CHP system are evaluated in terms of energetic aspects. Considering total output energy, the total energy efficiencies (electrical and thermal) of gas turbine cycle, heat recovery steam generator(HRSG), steam cycle and CHP system are 95.3 %, 83.56 %, 76.7 % and 79.3 %, respectively. Based on total useful energy output (excepting the stack gas, waste boiler loss, condenser line, medium pressure steam collector energies), the total useful energy efficiencies of gas turbine cycle, HRSG, steam cycle and CHP system are 82.3 %, 65.2 %, 18.5 % and 40.02 %, respectively. </jats:p>
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author Balli, Ozgur, Aras, Haydar
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description <jats:p> This study deals with the energetic analysis of a combined heat and power (CHP) system installed in Eskisehir City of Turkey. The mass and energy balance relations are derived and applied to the components of CHP system and overall CHP system. The performance characteristics of this CHP system are evaluated in terms of energetic aspects. Considering total output energy, the total energy efficiencies (electrical and thermal) of gas turbine cycle, heat recovery steam generator(HRSG), steam cycle and CHP system are 95.3 %, 83.56 %, 76.7 % and 79.3 %, respectively. Based on total useful energy output (excepting the stack gas, waste boiler loss, condenser line, medium pressure steam collector energies), the total useful energy efficiencies of gas turbine cycle, HRSG, steam cycle and CHP system are 82.3 %, 65.2 %, 18.5 % and 40.02 %, respectively. </jats:p>
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spelling Balli, Ozgur Aras, Haydar 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/10.1260/014459807781036412 <jats:p> This study deals with the energetic analysis of a combined heat and power (CHP) system installed in Eskisehir City of Turkey. The mass and energy balance relations are derived and applied to the components of CHP system and overall CHP system. The performance characteristics of this CHP system are evaluated in terms of energetic aspects. Considering total output energy, the total energy efficiencies (electrical and thermal) of gas turbine cycle, heat recovery steam generator(HRSG), steam cycle and CHP system are 95.3 %, 83.56 %, 76.7 % and 79.3 %, respectively. Based on total useful energy output (excepting the stack gas, waste boiler loss, condenser line, medium pressure steam collector energies), the total useful energy efficiencies of gas turbine cycle, HRSG, steam cycle and CHP system are 82.3 %, 65.2 %, 18.5 % and 40.02 %, respectively. </jats:p> Energetic Analyses of the Combined Heat and Power (CHP) System Energy Exploration & Exploitation
spellingShingle Balli, Ozgur, Aras, Haydar, Energy Exploration & Exploitation, Energetic Analyses of the Combined Heat and Power (CHP) System, Energy Engineering and Power Technology, Fuel Technology, Nuclear Energy and Engineering, Renewable Energy, Sustainability and the Environment
title Energetic Analyses of the Combined Heat and Power (CHP) System
title_full Energetic Analyses of the Combined Heat and Power (CHP) System
title_fullStr Energetic Analyses of the Combined Heat and Power (CHP) System
title_full_unstemmed Energetic Analyses of the Combined Heat and Power (CHP) System
title_short Energetic Analyses of the Combined Heat and Power (CHP) System
title_sort energetic analyses of the combined heat and power (chp) system
title_unstemmed Energetic Analyses of the Combined Heat and Power (CHP) System
topic Energy Engineering and Power Technology, Fuel Technology, Nuclear Energy and Engineering, Renewable Energy, Sustainability and the Environment
url http://dx.doi.org/10.1260/014459807781036412