Solar Energy
The physics and engineering of photovoltaic conversion, technologies and systems
Klaus Jäger author Arno Smets author Olindo Isabella author René van Swaaij author Miro Zeman author
Format:Paperback
Publisher:Bloomsbury Publishing PLC
Published:4th Feb '16
Should be back in stock very soon
An invaluable, comprehensive guide for anyone studying or researching solar technologies, with particular focus on the physics and design of photovoltaic (PV) cells and systems.
This book uniquely covers both the physics of photovoltaic (PV) cells and the design of PV systems for real-life applications.
This book provides a broad overview on the different aspects of solar energy, with a focus on photovoltaics, which is the technology that allows light energy to be converted into electric energy. Renewable energy sources have become increasingly popular in recent years, and solar is one of the most adaptable and attractive types – from solar farms to support the National Grid to roof panels/tiles used for solar thermal heating systems, and small solar garden lights. Written by Delft University researchers, Solar Energy uniquely covers both the physics of photovoltaic (PV) cells and the design of PV systems for real-life applications, from a concise history of solar cells components and location issues of current systems. The book is designed to make this complicated subject accessible to all, and is packed with fascinating graphs and charts, as well as useful exercises to cement the topics covered in each chapter. Solar Energy outlines the fundamental principles of semiconductor solar cells, as well as PV technology: crystalline silicon solar cells, thin-film cells, PV modules, and third-generation concepts. There is also background on PV systems, from simple stand-alone to complex systems connected to the grid. This is an invaluable reference for physics students, researchers, industrial engineers and designers working in solar energy generation, as well those with a general interest in renewable eneISBN: 9781906860325
Dimensions: unknown
Weight: unknown
488 pages