Sustainable Power Generation: Current Status, Future Challenges, and Perspectives
Autor Nikolay Belyakoven Limba Engleză Paperback – 11 iun 2019
Sustainable Power Generation explores the future of sustainable electricity generation, highlighting topics such as energy justice, emerging competences, and major transitions that need to be navigated. This is an ideal reference for researchers, engineers, and other technical specialists working in the energy sector, as well as environmental specialists and policy makers.
- Provides a multidisciplinary, structured approach to electricity generation, focusing on the key areas of technology, business, project management, and sustainability
- Includes analytics and discussions of sustainability metrics, underlying issues, and challenges
- Presents business cases, offering a mix of academic depth and practicality on energy options
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Specificații
ISBN-13: 9780128170120
ISBN-10: 0128170123
Pagini: 620
Ilustrații: Approx. 300 illustrations
Dimensiuni: 152 x 229 x 33 mm
Greutate: 0.82 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128170123
Pagini: 620
Ilustrații: Approx. 300 illustrations
Dimensiuni: 152 x 229 x 33 mm
Greutate: 0.82 kg
Editura: ELSEVIER SCIENCE
Cuprins
Part 1: Introduction to energy and energy systems1. Concept of energy2. Evaluation of energy resources3. Energy system and basic electricity market
Part 2: Sustainable energy and power generation4. The system boundaries of sustainability5. Sustainable Energy Development6. Power system and the environment
Part 3: Thermal power as a bridging technology towards sustainability7. Concept of a thermal power plant8. Efficient and clean combustion of fossil fuels within boiler island9. Power island and balance of plant10. Fossil energy economics and project lifecycle
Part 4: Past, present, and future of sustainable nuclear power11. Nuclear energy12. Modern nuclear power plant13. Development of sustainable nuclear power plant project
Part 5: Sustainable hydropower14. Traditional hydropower plant technology15. Hydropower project lifecycle
Part 6: Emerging sustainable energy systems16. Wind energy17. Solar energy18. Energy from municipal solid waste19. Bioenergy20. Geothermal energy21. Ocean energy conversion
Part 7: Future of sustainable power generation22. Can we build a sustainable power generation system?23. Sustainable electricity management beyond generation24. Transitions towards a sustainable power generation system of the future
Part 2: Sustainable energy and power generation4. The system boundaries of sustainability5. Sustainable Energy Development6. Power system and the environment
Part 3: Thermal power as a bridging technology towards sustainability7. Concept of a thermal power plant8. Efficient and clean combustion of fossil fuels within boiler island9. Power island and balance of plant10. Fossil energy economics and project lifecycle
Part 4: Past, present, and future of sustainable nuclear power11. Nuclear energy12. Modern nuclear power plant13. Development of sustainable nuclear power plant project
Part 5: Sustainable hydropower14. Traditional hydropower plant technology15. Hydropower project lifecycle
Part 6: Emerging sustainable energy systems16. Wind energy17. Solar energy18. Energy from municipal solid waste19. Bioenergy20. Geothermal energy21. Ocean energy conversion
Part 7: Future of sustainable power generation22. Can we build a sustainable power generation system?23. Sustainable electricity management beyond generation24. Transitions towards a sustainable power generation system of the future