LAPSE:2023.7430
Published Article

LAPSE:2023.7430
Power Plant Cycles: Evolution towards More Sustainable and Environmentally Friendly Technologies
February 24, 2023
Abstract
The scarcity of energy and water resources and rising temperatures due to climate change has set the focus on improving the energy efficiency of power plant thermodynamic cycles to adapt to higher heat sink temperatures and use fewer resources for energy production. In this work, a review of power production thermodynamic cycles is presented: from Brayton to Rankine and combined cycles, alongside particular cycles such as Organic Rankine Cycles, Kalina, Goswami or the more recently developed Hygroscopic Cycle. The efficiency of these cycles and their possible improvements are considered, as well as their environmental impact. Costs associated with existing power plants found in the literature have also been included in the study. The main existing facilities for each cycle type are assessed, and the most sustainable options in terms of resource consumption (fuel, water, etc.) and future perspectives to ensure both their energy efficiency and sustainability are identified.
The scarcity of energy and water resources and rising temperatures due to climate change has set the focus on improving the energy efficiency of power plant thermodynamic cycles to adapt to higher heat sink temperatures and use fewer resources for energy production. In this work, a review of power production thermodynamic cycles is presented: from Brayton to Rankine and combined cycles, alongside particular cycles such as Organic Rankine Cycles, Kalina, Goswami or the more recently developed Hygroscopic Cycle. The efficiency of these cycles and their possible improvements are considered, as well as their environmental impact. Costs associated with existing power plants found in the literature have also been included in the study. The main existing facilities for each cycle type are assessed, and the most sustainable options in terms of resource consumption (fuel, water, etc.) and future perspectives to ensure both their energy efficiency and sustainability are identified.
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Keywords
Energy Efficiency, energy generation, energy sustainability, power cycles, thermodynamic cycles, water consumption
Subject
Suggested Citation
Meana-Fernández A, González-Caballín JM, Martínez-Pérez R, Rubio-Serrano FJ, Gutiérrez-Trashorras AJ. Power Plant Cycles: Evolution towards More Sustainable and Environmentally Friendly Technologies. (2023). LAPSE:2023.7430
Author Affiliations
Meana-Fernández A: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain [ORCID]
González-Caballín JM: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain [ORCID]
Martínez-Pérez R: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain
Rubio-Serrano FJ: IMASA, Ingeniería y Proyectos, S.A. Carpinteros 12, 28670 Villaviciosa de Odón, Spain
Gutiérrez-Trashorras AJ: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain
González-Caballín JM: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain [ORCID]
Martínez-Pérez R: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain
Rubio-Serrano FJ: IMASA, Ingeniería y Proyectos, S.A. Carpinteros 12, 28670 Villaviciosa de Odón, Spain
Gutiérrez-Trashorras AJ: Department of Energy, Escuela Politécnica de Ingeniería de Gijón, Edificio Departamental Este, University of Oviedo, C/Wifredo Ricart, s/n, 33204 Gijón, Spain
Journal Name
Energies
Volume
15
Issue
23
First Page
8982
Year
2022
Publication Date
2022-11-28
ISSN
1996-1073
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Original Submission
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PII: en15238982, Publication Type: Review
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LAPSE:2023.7430
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https://doi.org/10.3390/en15238982
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Feb 24, 2023
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