Renewable Energy Focus e-Mega Handbook
A one-stop Desk Reference, for engineers involved in renewable energies; this is a book that will not gather dust on the shelf. It brings together the essential professional reference content from leading international contributors in the field. Material ranges from basic to advanced topics

* A fully searchable Mega Reference Ebook, providing all the essential material needed by Energy and Environmental Engineers on a day-to-day basis. * Fundamentals, key techniques, engineering best practice and rules-of-thumb together in one quick-reference.* Over 2,500 pages of reference material, including over 1,500 pages not included in the print edition
"1143864034"
Renewable Energy Focus e-Mega Handbook
A one-stop Desk Reference, for engineers involved in renewable energies; this is a book that will not gather dust on the shelf. It brings together the essential professional reference content from leading international contributors in the field. Material ranges from basic to advanced topics

* A fully searchable Mega Reference Ebook, providing all the essential material needed by Energy and Environmental Engineers on a day-to-day basis. * Fundamentals, key techniques, engineering best practice and rules-of-thumb together in one quick-reference.* Over 2,500 pages of reference material, including over 1,500 pages not included in the print edition
104.49 In Stock
Renewable Energy Focus e-Mega Handbook

Renewable Energy Focus e-Mega Handbook

Renewable Energy Focus e-Mega Handbook

Renewable Energy Focus e-Mega Handbook

eBook

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Overview

A one-stop Desk Reference, for engineers involved in renewable energies; this is a book that will not gather dust on the shelf. It brings together the essential professional reference content from leading international contributors in the field. Material ranges from basic to advanced topics

* A fully searchable Mega Reference Ebook, providing all the essential material needed by Energy and Environmental Engineers on a day-to-day basis. * Fundamentals, key techniques, engineering best practice and rules-of-thumb together in one quick-reference.* Over 2,500 pages of reference material, including over 1,500 pages not included in the print edition

Product Details

ISBN-13: 9780123747068
Publisher: Elsevier Science
Publication date: 12/29/2008
Sold by: Barnes & Noble
Format: eBook
Pages: 528
File size: 29 MB
Note: This product may take a few minutes to download.

About the Author

Professor Emeritus at the Department of People and Technology, and a professor of physics at the Institute of Mathematics and Physics, both at Roskilde University, Denmark. He is also an independent consultant at Novator Advanced Technology Consulting. Bent Sørensen’s research is cross-disciplinary and has resulted in nearly a thousand scientific articles and some 40 books, including foundation work in economic theory (the scenario method, life-cycle analysis) and in energy research (renewable energy resources, technology and applications).

Dr. Sørensen is one of the world’s leading specialists in renewable energy. He has five decades of experience in researching the field, and has published hundreds of monographs, articles in scientific journals, technical reports, and conference contributions. He has received several awards and has been knighted by Her Majesty Queen Margrethe of Denmark.

He has worked at universities in Japan, France, Denmark, Australia and the United States (Berkeley and Yale), has been a consultant to governments and international organizations, a lead author in the IPCC climate assessment recipient of several international prizes and honors.
Dr. Maegaard is Director of the Nordic Folkecenter for Renewable Energy, an institute for the development and implementation of renewable energies located in Denmark. The center has, under his leadership, provided transfer of renewable energy technology to many countries. Dr. Maegaard was appointed the first president of the World Wind Energy Institute, first president of the World Wind Energy Association, and has served as a Renewable Energy Adviser to the President of Mali. For over three decades, Dr. Maegaard has been a director, organizer, and speaker at numerous international seminars, workshops and conferences. He has authored numerous reports, books, and articles in Danish, English, German and Japanese on renewables and sustainable development.
Professor Soteris Kalogirou obtained his PhD and DSc from the University of Glamorgan, UK. For more than 30 years, he has been actively involved in research of solar energy and in flat plate and concentrating collectors, solar water heating, solar steam generating systems, desalination, photovoltaics and absorption cooling in particular. He has many books and book contributions and has published large number papers in international scientific journals and refereed conference proceedings. He is Editor-in-Chief of Renewable Energy and Deputy Editor-in-Chief of Energy, as well as Editorial Board Member of another eleven journals. He is the author of the book Solar Energy Engineering: Processes and Systems and Thermal Solar Desalination, both published by Academic Press of Elsevier. He has been a member of World Renewable Energy Network (WREN), American Society of Heating Refrigeration and Air-conditioning Engineers (ASHRAE), Institute of Refrigeration (IoR) and International Solar Energy Society (ISES).
Paul Breeze is a journalist and freelance science and technology writer and consultant in the United Kingdom. He has specialised in power generation technology for the past 30 years. In addition to writing Power Generation Technologies, Second Edition, he has contributed to journals and newspapers such as The Financial Times and The Economist and has written a range of technical management reports covering all the aspects of power generation, transmission and distribution.
Galen J. Suppes is a professor at the Department of Chemical Engineering of the University of Missouri, Columbia, USA. He received his B.S in Chemical Engineering from Kansas State University in 1985, and his Ph.D. from The Johns Hopkins University in 1989. He has also done Post-Doc Class Work at the University of Huston in 1991/92, and is author of over 120 documents, including peer reviewed articles, conference papers and scientific reports.
Prof. Dr. N. El Bassam is the founder and director of the International Research Centre for Renewable Energy (IFEED), Germany, India and USA; Chairperson at World Council of Renewable Energy (WCRE) Scientific Advisory Board, Federal Association of Regenerative Mobility, and Vice President of the Climate Protection Agency North Germany; Chairman of the Working Group Sustainable Rural Energy Network (SREN), FAO, United Nations, Rome; ); Program Head of the Projects wind energy and Concentrating Solar Power for Power (CSP) Supply and Seawater Desalination Middle East and North Africa (DESERTEC).

He coordinates the Centre activities, technology transfer of and the co-operation in national and international organizations (UN, EU, and Club of Rome), the integration and application of renewable energy resources available in various regions for electricity, water and food supply with aims of empowering the countryside.

El Bassam is well-known as Poverty Researcher, in this context he initiated the strategy and project “Empowering Urban Cities and Rural Habitats in Africa” which considered as a Marshal Plan for sustainable economic development and combating Poverty, migration, and Depopulation of urban cities and Rural Communities worldwide.

He contributes as an editor in the journals: International Journal “Sustainability Science, Springer Scientific Publishing Services; Jordan Journal of Mechanical and Industrial Engineering and the American Journal of Engineering and Applied Sciences (AJEAS).

El Bassam published 12 books, authored numerous publications, and received several awards
Dr. da Rosa taught the perennially popular Renewable Energy course at Stanford University for over 30 years. Former Chairman of the Brazilian National Research Council, Director of the Aeronautical Technical Center, and founder of Brazilian NASA, he also served as the CEO of a tech start-up, Chairman of the Board for a microprocessor manufacturer, and as a member of Siemens Corporation’s scientific advisory board.

Table of Contents

Author BiographiesSection 1 Introduction 1.0 Introduction 1.1 The History of EnergySection 2 Energy Perspectives 2.1 Energy Perspectives 2.2 Political and Technological Issues 2.3 Electrical Power as Sustainable Energy 2.4 Planning of Integrated Energy Systems for Rural Communities 2.5 The Energy Outlook 2.6 Bioenergy - Realizing the Potential NowSection 3 Alternative Energy Sources 3.1 Alternate Energy Sources 3.2 Energy Reserves and Renewable Energy Sources 3.3 The Individual Energy Sources 3.4 Renewable Energy Resources and TechnologiesSection 4 Energy Conversion 4.1 Energy Conversion Processes 4.2 Mechanical Heat Engines 4.3 Ocean Thermal Energy ConvertersSection 5 Fuel Cells 5.1 Fuel Cells 5.2 Fuel Cell System Design 5.3 Fuel Cell Applications 5.4 Fuel Cells and Hydrogen EconomySection 6 Solar Power 6.1 Solar Power 6.2 Solar Thermal Collectors and Applications 6.3 Solar Radiation 6.4 Photovoltaic Converters 6.5 Solar Thermal Power Generation 6.6 Solar Thermal Energy, Industrial and Heat ApplicationsSection 7 Ocean, Wave and Tidal Power 7.1 Ocean Power 7.2 Tidal Energy 7.3 Wave and Tidal Energy ConversionSection 8 Geothermal Power 8.1 Geothermal Power 8.2 Basic Concepts 8.3 Worldwide Status of Geothermal Resource Utilization 8.4 Thermal Energy of the OceansSection 9 Wind Power 9.1 Wind Power 9.2 Wind FarmsSection 10 Hydropower 10.1 Hydropower Resources 10.2 Hydropower TechnologySection 11 Power from Waste 11.1 Power from Waste 11.2 Waste Energy TechnologySection 12 Bioenergy 12.1 Bioenergy 12.2 Biodiesel Fuels 12.3 Biomass-Based Power Generation 12.4 Bioreactor Engineering 12.5 Power Generation from Biorenewable Resources 12.6 Biological Production of Hydrogen from Biorenewable ResourcesSection 13 Storage Technologies 13.1 Storage Technologies 13.2 Lead Acid Batteries for Solar and Wind Energy Storage 13.3 Battery Management and Life Prediction 13.4 Battery Collection and Recycling
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