Description

Book Synopsis
Equips students with the concepts and tools needed to model, design, and build efficient, clean low-carbon energy conversion systems with this advanced undergraduate and graduate-level textbook. Features real-world examples, homework problems, and online instructor resources including lecture slides, solutions, and sample projects.

Trade Review
'An outstanding textbook and reference, spanning fundamentals to real-world devices. This book will guide the next generation of engineers who are realizing the low-carbon energy transition.' Timothy Lieuwen, Georgia Institute of Technology
'A comprehensive toolkit for understanding, evaluating, and comparing conventional and evolving new energy systems in terms of their engineering performance and environmental impacts and benefits. It is a must-read for students and researchers interested in designing and modeling energy technologies to meet today's low-carbon-emitting and other sustainability objectives.' Jefferson Tester, Cornell University
'Professor Ghoniem draws from decades of research expertise and teaching experience at MIT in the field of energy conversion. This timely textbook covers both the fundamentals of thermodynamics and real-world applications of cutting-edge clean energy systems to equip the next generation of students to design, analyze, and optimize low-carbon and zero-carbon energy systems for a sustainable future.' Katherine Hornbostel, University of Pittsburgh
'This book provides a holistic view of energy conversion systems by discussing conventional concepts as well as emerging technologies, all of which are connected by fundamental energy conversion principles. I truly believe that readers can envision a bright pathway toward sustainable power generation with low environmental impact.' Jongsup Hong, Yonsei University
'An excellent, up-to-date, and comprehensive textbook and reference in energy conversion. It provides a practical and fresh perspective on the subject, which is nicely complemented with chapters addressing clean energy conversion and strategies to control CO2 emissions. This book is a must-have reference for anyone interested in the subject of energy conversion.' Tarek Echekki, North Carolina State University
'This book is systematically developed, very well organized, and well written. The coverage in all 14 chapters is comprehensive, with example problems and additional problems at the end of each chapter. It is a timely book as we seek innovative solutions for clean energy production at higher efficiency, with due considerations given to environmental pollution, including CO2. I enthusiastically endorse this book.' Ashwani K. Gupta, University of Maryland

Table of Contents
Preface; 1. Low carbon energy: Why?; 2. Thermodynamics; 3. Chemical thermodynamics; 4. Electrochemical thermodynamics; 5. Gas turbine cycles; 6. Rankine cycles; 7. Fuel cells at finite current; 8. Combined, oxy-combustion and hybrid cycles; 9. Solar thermal, geothermal and integration; 10. Gas separation; 11. Carbon capture cycles: natural gas; 12. Coal power cycles, gasification and synfuels; 13. Carbon capture cycles: coal; 14. Biomass; Index.

Energy Conversion Engineering

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Order before 4pm tomorrow for delivery by Tue 16 Dec 2025.

A Hardback by Ahmed F. Ghoniem

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    View other formats and editions of Energy Conversion Engineering by Ahmed F. Ghoniem

    Publisher: Cambridge University Press
    Publication Date: 11/11/2021 12:00:00 AM
    ISBN13: 9781108478373, 978-1108478373
    ISBN10: 1108478379

    Description

    Book Synopsis
    Equips students with the concepts and tools needed to model, design, and build efficient, clean low-carbon energy conversion systems with this advanced undergraduate and graduate-level textbook. Features real-world examples, homework problems, and online instructor resources including lecture slides, solutions, and sample projects.

    Trade Review
    'An outstanding textbook and reference, spanning fundamentals to real-world devices. This book will guide the next generation of engineers who are realizing the low-carbon energy transition.' Timothy Lieuwen, Georgia Institute of Technology
    'A comprehensive toolkit for understanding, evaluating, and comparing conventional and evolving new energy systems in terms of their engineering performance and environmental impacts and benefits. It is a must-read for students and researchers interested in designing and modeling energy technologies to meet today's low-carbon-emitting and other sustainability objectives.' Jefferson Tester, Cornell University
    'Professor Ghoniem draws from decades of research expertise and teaching experience at MIT in the field of energy conversion. This timely textbook covers both the fundamentals of thermodynamics and real-world applications of cutting-edge clean energy systems to equip the next generation of students to design, analyze, and optimize low-carbon and zero-carbon energy systems for a sustainable future.' Katherine Hornbostel, University of Pittsburgh
    'This book provides a holistic view of energy conversion systems by discussing conventional concepts as well as emerging technologies, all of which are connected by fundamental energy conversion principles. I truly believe that readers can envision a bright pathway toward sustainable power generation with low environmental impact.' Jongsup Hong, Yonsei University
    'An excellent, up-to-date, and comprehensive textbook and reference in energy conversion. It provides a practical and fresh perspective on the subject, which is nicely complemented with chapters addressing clean energy conversion and strategies to control CO2 emissions. This book is a must-have reference for anyone interested in the subject of energy conversion.' Tarek Echekki, North Carolina State University
    'This book is systematically developed, very well organized, and well written. The coverage in all 14 chapters is comprehensive, with example problems and additional problems at the end of each chapter. It is a timely book as we seek innovative solutions for clean energy production at higher efficiency, with due considerations given to environmental pollution, including CO2. I enthusiastically endorse this book.' Ashwani K. Gupta, University of Maryland

    Table of Contents
    Preface; 1. Low carbon energy: Why?; 2. Thermodynamics; 3. Chemical thermodynamics; 4. Electrochemical thermodynamics; 5. Gas turbine cycles; 6. Rankine cycles; 7. Fuel cells at finite current; 8. Combined, oxy-combustion and hybrid cycles; 9. Solar thermal, geothermal and integration; 10. Gas separation; 11. Carbon capture cycles: natural gas; 12. Coal power cycles, gasification and synfuels; 13. Carbon capture cycles: coal; 14. Biomass; Index.

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