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Original Articles

Second Law (Exergy) Analysis of Cogeneration System

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Pages 1267-1280 | Published online: 20 May 2008

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Read on this site (8)

Abdel Khoodaruth. (2019) Thermo-economics analysis of a cane bio-refinery. International Journal of Sustainable Energy 38:1, pages 50-63.
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Selçuk Bilgen & İkbal Sarıkaya. (2018) Energy conservation policy and environment for a clean and sustainable energy future. Energy Sources, Part B: Economics, Planning, and Policy 13:3, pages 183-189.
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Selçuk Bilgen & İkbal Sarıkaya. (2017) The use and its impact on the environment of cogeneration as an important element for a clean and sustainable energy future. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39:21, pages 2078-2086.
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Selçuk Bilgen & İkbal Sarıkaya. (2016) Contribution of efficient energy use on economy, environment, and sustainability. Energy Sources, Part B: Economics, Planning, and Policy 11:12, pages 1166-1172.
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Selçuk Bilgen. (2016) Correlation for estimation of the chemical availability (exergy) from ultimate analysis of pyrolytic oils obtained from fast pyrolysis of biomass. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:9, pages 1286-1292.
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S. Bilgen. (2014) Comparison of Physico-chemical Properties of Various Coals as Thermodynamics: First and Second Law Analysis. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36:21, pages 2347-2354.
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S. Bilgen. (2014) The Estimation of Chemical Availability (Exergy) Values for Various Types of Coals in Geographical Regions of Turkey. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36:8, pages 830-842.
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K. Kaygusuz & S. Bilgen. (2009) Thermodynamic Aspects of Renewable and Sustainable Development. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 31:4, pages 287-298.
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Articles from other publishers (10)

Guillermo Valencia Ochoa, Carlos Acevedo Peñaloza & Jorge Duarte Forero. (2019) Thermo-Economic Assessment of a Gas Microturbine-Absorption Chiller Trigeneration System under Different Compressor Inlet Air Temperatures. Energies 12:24, pages 4643.
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Mohammad H. Ahmadi, Mohammad Alhuyi Nazari, Milad Sadeghzadeh, Fathollah Pourfayaz, Mahyar Ghazvini, Tingzhen Ming, Josua P. Meyer & Mohsen Sharifpur. (2019) Thermodynamic and economic analysis of performance evaluation of all the thermal power plants: A review. Energy Science & Engineering 7:1, pages 30-65.
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S. Nikbakht Naserabad, A. Mehrpanahi & G. Ahmadi. (2018) Multi-objective optimization of HRSG configurations on the steam power plant repowering specifications. Energy 159, pages 277-293.
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Ravinder Kumar. (2017) A critical review on energy, exergy, exergoeconomic and economic (4-E) analysis of thermal power plants. Engineering Science and Technology, an International Journal 20:1, pages 283-292.
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Selçuk Bilgen & İkbal Sarıkaya. (2015) Exergy for environment, ecology and sustainable development. Renewable and Sustainable Energy Reviews 51, pages 1115-1131.
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S. Nikbakht Naserabad, K. Mobini, A. Mehrpanahi & M. R. Aligoodarz. (2015) Exergy-energy analysis of full repowering of a steam power plant. Frontiers in Energy 9:1, pages 54-67.
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S. Bilgen. (2014) Structure and environmental impact of global energy consumption. Renewable and Sustainable Energy Reviews 38, pages 890-902.
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G. Xydis, E. Nanaki & C. Koroneos. (2013) Exergy analysis of biogas production from a municipal solid waste landfill. Sustainable Energy Technologies and Assessments 4, pages 20-28.
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Cristina Guedes Carolino & João Paulo Medeiros Ferreira. (2013) First and second law analyses to an energetic valorization process of biogas. Renewable Energy 59, pages 58-64.
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Yaşar Demirel. (2013) Thermodynamic Analysis. Arabian Journal for Science and Engineering 38:2, pages 221-249.
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