This book covers the many renewables technologies implemented worldwide by harnessing sustainable resources, mitigating pollution and climate change, and providing cost effective services. It supports multi-disciplinary master's degrees in science and engineering, and specialist modules at undergraduate level.
This book covers the many renewables technologies implemented worldwide by harnessing sustainable resources, mitigating pollution and climate change, and providing cost effective services. It supports multi-disciplinary master's degrees in science and engineering, and specialist modules at undergraduate level.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
John Twidell has considerable experience in renewable energy as an academic professor in both the UK and abroad, teaching undergraduate and postgraduate courses and supervising research students and fellows. He has participated in the extraordinary growth of renewable energy as a researcher, journal editor, board member of wind and solar professional associations, and company director. University positions have been in Scotland, England, Sudan and Fiji. The family home operates with solar heat and electricity, biomass heat, all-electric cars, energy management and a large vegetable garden; the aim is to practice what is preached! Online Resources Julie Alexander has been teaching physics for 35 years at the University of Victoria and Camosun College in Victoria, British Columbia, Canada. She holds a PhD in climate modeling and has recently developed a one semester course in renewable energy that she teaches to second year mechanical engineering students. After an extensive search for a suitable textbook she chose the third edition of Renewable Energy Resources by John Twidell and Tony Weir. She is looking forward to using the updated fourth edition of this book for her courses in the future. Julie also enjoys competitive rowing and playing the violin. https://juliealexander.ca jalex@camosun.ca
Inhaltsangabe
1. Principles of renewable energy 2. Solar radiation characteristics and impacts: including the greenhouse effect 3. Solar water heating 4. Other solar thermal applications 5. Photovoltaic (PV) power technology 6. Hydropower 7. Wind resource 8. Wind power technology 9. Biomass resources from photosynthesis 10. Bioenergy technologies 11. Wave power 12. Tidal-current and tidal-range power 13. Ocean gradient energy: OTEC, DOWA and osmotic power 14. Geothermal energy 15. Energy systems: integration, distribution and storage 16. Solar-buildings and efficient energy use; including transportation, manufacture and homes 17. Institutional and economic factors
1. Principles of renewable energy 2. Solar radiation characteristics and impacts: including the greenhouse effect 3. Solar water heating 4. Other solar thermal applications 5. Photovoltaic (PV) power technology 6. Hydropower 7. Wind resource 8. Wind power technology 9. Biomass resources from photosynthesis 10. Bioenergy technologies 11. Wave power 12. Tidal-current and tidal-range power 13. Ocean gradient energy: OTEC, DOWA and osmotic power 14. Geothermal energy 15. Energy systems: integration, distribution and storage 16. Solar-buildings and efficient energy use; including transportation, manufacture and homes 17. Institutional and economic factors
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