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Electrical Energy Conversion and Transport

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Release : 2013-05-03
Genre : Technology & Engineering
Kind : eBook
Book Rating : 038/5 ( reviews)

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Book Synopsis Electrical Energy Conversion and Transport by : George G. Karady

Download or read book Electrical Energy Conversion and Transport written by George G. Karady. This book was released on 2013-05-03. Available in PDF, EPUB and Kindle. Book excerpt: Designed to support interactive teaching and computer assisted self-learning, this second edition of Electrical Energy Conversion and Transport is thoroughly updated to address the recent environmental effects of electric power generation and transmission, which have become more important together with the deregulation of the industry. New content explores different power generation methods, including renewable energy generation (solar, wind, fuel cell) and includes new sections that discuss the upcoming Smart Grid and the distributed power generation using renewable energy generation, making the text essential reading material for students and practicing engineers.

Electrical Energy Efficiency

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Release : 2012-03-15
Genre : Technology & Engineering
Kind : eBook
Book Rating : 063/5 ( reviews)

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Book Synopsis Electrical Energy Efficiency by : Andreas Sumper

Download or read book Electrical Energy Efficiency written by Andreas Sumper. This book was released on 2012-03-15. Available in PDF, EPUB and Kindle. Book excerpt: The improvement of electrical energy efficiency is fast becoming one of the most essential areas of sustainability development, backed by political initiatives to control and reduce energy demand. Now a major topic in industry and the electrical engineering research community, engineers have started to focus on analysis, diagnosis and possible solutions. Owing to the complexity and cross-disciplinary nature of electrical energy efficiency issues, the optimal solution is often multi-faceted with a critical solutions evaluation component to ensure cost effectiveness. This single-source reference brings a practical focus to the subject of electrical energy efficiency, providing detailed theory and practical applications to enable engineers to find solutions for electroefficiency problems. It presents power supplier as well as electricity user perspectives and promotes routine implementation of good engineering practice. Key features include: a comprehensive overview of the different technologies involved in electroefficiency, outlining monitoring and control concepts and practical design techniques used in industrial applications; description of the current standards of electrical motors, with illustrative case studies showing how to achieve better design; up-to-date information on standarization, technologies, economic realities and energy efficiency indicators (the main types and international results); coverage on the quality and efficiency of distribution systems (the impact on distribution systems and loads, and the calculation of power losses in distribution lines and in power transformers). With invaluable practical advice, this book is suited to practicing electrical engineers, design engineers, installation designers, M&E designers, and economic engineers. It equips maintenance and energy managers, planners, and infrastructure managers with the necessary knowledge to properly evaluate the wealth of electrical energy efficiency solutions for large investments. This reference also provides interesting reading material for energy researchers, policy makers, consultants, postgraduate engineering students and final year undergraduate engineering students.

Waste to Energy Conversion Technology

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Release : 2013-05-15
Genre : Technology & Engineering
Kind : eBook
Book Rating : 362/5 ( reviews)

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Book Synopsis Waste to Energy Conversion Technology by : Naomi B Klinghoffer

Download or read book Waste to Energy Conversion Technology written by Naomi B Klinghoffer. This book was released on 2013-05-15. Available in PDF, EPUB and Kindle. Book excerpt: Increasing global consumerism and population has led to an increase in the levels of waste produced. Waste to energy (WTE) conversion technologies can be employed to convert residual wastes into clean energy, rather than sending these wastes directly to landfill. Waste to energy conversion technology explores the systems, technology and impacts of waste to energy conversion. Part one provides an introduction to WTE conversion and reviews the waste hierarchy and WTE systems options along with the corresponding environmental, regulatory and techno-economic issues facing this technology. Part two goes on to explore further specific aspects of WTE systems, engineering and technology and includes chapters on municipal solid waste (MSW) combustion plants and WTE systems for district heating. Finally, part three highlights pollution control systems for waste to energy technologies. Waste to energy conversion technology is a standard reference book for plant managers, building engineers and consultants requiring an understanding of WTE technologies, and researchers, scientists and academics interested in the field. Reviews the waste hierarchy and waste to energy systems options along with the environmental and social impact of WTE conversion plants Explores the engineering and technology behind WTE systems including considerations of municipal solid waste (MSW) its treatment, combustion and gasification Considers pollution control systems for WTE technologies including the transformation of wast combustion facilities from major polluters to pollution sinks

Power Conversion of Renewable Energy Systems

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Release : 2011-03-31
Genre : Technology & Engineering
Kind : eBook
Book Rating : 794/5 ( reviews)

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Book Synopsis Power Conversion of Renewable Energy Systems by : Ewald F. Fuchs

Download or read book Power Conversion of Renewable Energy Systems written by Ewald F. Fuchs. This book was released on 2011-03-31. Available in PDF, EPUB and Kindle. Book excerpt: Power Conversion of Renewable Energy Systems presents an introduction to conventional energy conversion components and systems, as well as those related to renewable energy. This volume introduces systems first, and then in subsequent chapters describes the components of energy systems in detail. Readers will find examples of renewable and conventional energy and power systems, including energy conversion, variable-speed drives and power electronics, in addition to magnetic devices such as transformers and rotating machines. Applications of PSpice, MATLAB, and Mathematica are also included, along with solutions to over 100 application examples. Power Conversion of Renewable Energy Systems aims to instruct readers how to actively apply the theories discussed within. It would be an ideal volume for researchers, students and engineers working with energy systems and renewable energy.

Power Conversion and Control of Wind Energy Systems

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Release : 2011-08-09
Genre : Technology & Engineering
Kind : eBook
Book Rating : 652/5 ( reviews)

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Book Synopsis Power Conversion and Control of Wind Energy Systems by : Bin Wu

Download or read book Power Conversion and Control of Wind Energy Systems written by Bin Wu. This book was released on 2011-08-09. Available in PDF, EPUB and Kindle. Book excerpt: The book presents the latest power conversion and control technology in modern wind energy systems. It has nine chapters, covering technology overview and market survey, electric generators and modeling, power converters and modulation techniques, wind turbine characteristics and configurations, and control schemes for fixed- and variable-speed wind energy systems. The book also provides in-depth steady-state and dynamic analysis of squirrel cage induction generator, doubly fed induction generator, and synchronous generator based wind energy systems. To illustrate the key concepts and help the reader tackle real-world issues, the book contains more than 30 case studies and 100 solved problems in addition to simulations and experiments. The book serves as a comprehensive reference for academic researchers and practicing engineers. It can also be used as a textbook for graduate students and final year undergraduate students.

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