Description

Book Synopsis
The provision of sustainable energy supplies for an expanding and increasingly productive world is one of the major issues facing civilisation today. Renewable Energy examines both the practical and economic potential of the renewable energy sources to meet this challenge. The underlying physical and technological principles behind deriving power from direct solar (solar thermal and photovoltaics), indirect solar (biomass, hydro, wind and wave) and non-solar (tidal and geothermal) energy sources are explained, within the context of their environmental impacts, their economics and their future prospects. Renewable Energy provides both perspective and detail on the relative merits and state of progress of technologies for utilizing the various ''renewables''. The analysis considers emissions, sustainability, cost implications and energy security, as political and economic pressures move society towards a low-carbon future. From an overview of basic energy conversion processes, through

Trade Review
Review from previous edition I have reviewed many textbooks on renewable energy and this one stands clearly above them all. It provides an excellent balance between technical content and practical application. * Douglas J Reinemann, Professor of Biological Systems Engineering, University of Wisconsin-Madison, USA *
The quality of illustrations in Renewable Energy , as well as the inclusion of energy data for North America, make this and its sister volume, Energy Systems and Sustainability , my top choice for any energy program in higher education. * James Leidel, Director of Clean Energy Syctems, Oakland University, USA *
A great introductory text for teaching, and an excellent reference for your bookshelf. * Ian Mason, University of Canterbury, NZ *
An excellent overview of all the principal renewable energy technologies, placing them in the context of the overall power system. Individual chapters are all written by experts, but edited into a common style so that the level of detail is comparable across all chapters. The best book of its sort on the market. * Paul Younger, University of Glasgow *
Excellent textbook for an introductory course on renewable energy systems. Some mathematical principles are introduced to reinforce concepts. Overall excellent material to get undergraduate students engaged with the field before digging into the detail. * Tom Norton, Harper Adams University, UK *
This textbook continues the high standards of previous editions in terms of the clarity with which it explains the technologies while offering high quality graphics. * Peter Connor, University of Exeter *

Table of Contents
1: Introducing Renewable Energy 2: Thermodynamics and Heat Pumps 3: Solar Thermal Energy 4: Solar Photovoltaics 5: Bioenergy 6: Hydroelectricity 7: Tidal Power 8: Wind Energy 9: Wave Energy 10: Geothermal Energy 11: Integrating Renewable Energy 12: Renewable Energy Futures A1: Appendix: Investing in renewable energy A2: Appendix: Units

Renewable Energy

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Order before 4pm today for delivery by Fri 19 Dec 2025.

A Paperback / softback by Stephen Peake

1 in stock


    View other formats and editions of Renewable Energy by Stephen Peake

    Publisher: Oxford University Press
    Publication Date: 16/11/2017
    ISBN13: 9780198759751, 978-0198759751
    ISBN10: 0198759754

    Description

    Book Synopsis
    The provision of sustainable energy supplies for an expanding and increasingly productive world is one of the major issues facing civilisation today. Renewable Energy examines both the practical and economic potential of the renewable energy sources to meet this challenge. The underlying physical and technological principles behind deriving power from direct solar (solar thermal and photovoltaics), indirect solar (biomass, hydro, wind and wave) and non-solar (tidal and geothermal) energy sources are explained, within the context of their environmental impacts, their economics and their future prospects. Renewable Energy provides both perspective and detail on the relative merits and state of progress of technologies for utilizing the various ''renewables''. The analysis considers emissions, sustainability, cost implications and energy security, as political and economic pressures move society towards a low-carbon future. From an overview of basic energy conversion processes, through

    Trade Review
    Review from previous edition I have reviewed many textbooks on renewable energy and this one stands clearly above them all. It provides an excellent balance between technical content and practical application. * Douglas J Reinemann, Professor of Biological Systems Engineering, University of Wisconsin-Madison, USA *
    The quality of illustrations in Renewable Energy , as well as the inclusion of energy data for North America, make this and its sister volume, Energy Systems and Sustainability , my top choice for any energy program in higher education. * James Leidel, Director of Clean Energy Syctems, Oakland University, USA *
    A great introductory text for teaching, and an excellent reference for your bookshelf. * Ian Mason, University of Canterbury, NZ *
    An excellent overview of all the principal renewable energy technologies, placing them in the context of the overall power system. Individual chapters are all written by experts, but edited into a common style so that the level of detail is comparable across all chapters. The best book of its sort on the market. * Paul Younger, University of Glasgow *
    Excellent textbook for an introductory course on renewable energy systems. Some mathematical principles are introduced to reinforce concepts. Overall excellent material to get undergraduate students engaged with the field before digging into the detail. * Tom Norton, Harper Adams University, UK *
    This textbook continues the high standards of previous editions in terms of the clarity with which it explains the technologies while offering high quality graphics. * Peter Connor, University of Exeter *

    Table of Contents
    1: Introducing Renewable Energy 2: Thermodynamics and Heat Pumps 3: Solar Thermal Energy 4: Solar Photovoltaics 5: Bioenergy 6: Hydroelectricity 7: Tidal Power 8: Wind Energy 9: Wave Energy 10: Geothermal Energy 11: Integrating Renewable Energy 12: Renewable Energy Futures A1: Appendix: Investing in renewable energy A2: Appendix: Units

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