Solar Energy Conversion. The Solar Cell
β Scribed by Richard C. Neville (Auth.)
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Leaves
- 432
- Edition
- 2
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
A large number of solar cell and solar cell systems are described in this volume. The theory of their operation, their design and the levels of their performance is discussed. Originally the book appeared in 1978 but extensive change over the intervening years in the fields of energy generation and consumption, solar energy and solar cells, has necessitated the publication of an updated version.
The text initially surveys the requirements of humanity, the subsequent need for solar cells, the nature of sunlight and the properties of semiconductors. Concrete examples, extensive references and theoretical arguments are then used to present a comparison of options available in the design and operation of solar cells and solar cell systems. The cells - constructed from single, crystal, polycrystalline and amorphous semiconductors - and the systems - have varying designs and differing levels of solar energy for input and produce electricity or electrical and thermal energies. Solar cell production, economics and environmental effects are considered throughout the publication
β¦ Table of Contents
Content:
Preface, Pages v-ix
Chapter I - Energy NeedsβEnergy Sources, Pages 1-38
Chapter II - The Sun and Sunlight, Pages 39-70
Chapter III - Semiconductors, Pages 71-118
Chapter IV - Light-Semiconductor Interaction, Pages 119-153
Chapter V - Basic Theoretical Performance, Pages 155-195
Chapter VI - Solar Cell Configuration and Performance, Pages 197-256
Chapter VII - Advanced Approaches, Pages 257-300
Chapter VIII - Advanced Approaches-II, Pages 301-337
Chapter IX - Polycrystalline and Amorphous Solar Cells, Pages 339-362
Chapter X - Concluding Thoughts, Pages 363-396
Appendix A - Conversion Factors, Pages 397-403
Appendix B - Selected Properties of some Semiconductors with Photovoltaic Cell Potential, Pages 403-407
Appendix C - The Saturation Current in pn Junction Solar Cells, Pages 407-411
Appendix D - Some Useful Physical Constants, Page 411
Appendix E - Symbols, Pages 411-419
Subject Index, Pages 420-426
π SIMILAR VOLUMES
<p><p>This book offers a concise primer on energy conversion efficiency and the Shockley-Queisser limit in single p-n junction solar cells. It covers all the important fundamental physics necessary to understand the conversion efficiency, which is indispensable in studying, investigating, analyzing,
Solar energy conversion requires a different mind-set from traditional energy engineering in order to assess distribution, scales of use, systems design, predictive economic models for fluctuating solar resources, and planning to address transient cycles and social adoption. <b><i>Solar Energy Conve