Buch, Englisch, Band 142, 172 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 453 g
Reihe: Topics in Applied Physics
Buch, Englisch, Band 142, 172 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 453 g
Reihe: Topics in Applied Physics
ISBN: 978-981-16-3491-8
Verlag: Springer Nature Singapore
This book presents an overview of both the theory and experimental methods required to realize high efficiency solar absorber devices. It begins with a historical description of the study of spectrally selective solar absorber materials and structures based on optical principles and methods developed over the past few decades. The optical properties of metals and dielectric materials are addressed to provide the background necessary to achieve high performance of the solar absorber devices as applied in the solar energy field. In the following sections, different types of materials and structures, together with the relevant experimental methods, are discussed for practical construction and fabrication of the solar absorber devices, aiming to maximally harvest the solar energy while at the same time effectively suppressing the heat-emission loss. The optical principles and methods used to evaluate the performance of solar absorber devices with broad applications in different physicalconditions are presented. The book is suitable for graduate students in applied physics, and provides a valuable reference for researchers working actively in the field of solar energy.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Technische Wissenschaften Technik Allgemein Technische Optik, Lasertechnologie
- Technische Wissenschaften Energietechnik | Elektrotechnik Energieeffizienz
- Naturwissenschaften Physik Elektromagnetismus Quantenoptik, Nichtlineare Optik, Laserphysik
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Elektronik, Optik
- Technische Wissenschaften Elektronik | Nachrichtentechnik Nachrichten- und Kommunikationstechnik
Weitere Infos & Material
1. Introduction.- 2. Conventional electromagnetic theory.- 3. Optical properties of the solar materials.- 4. Optical characteristic of the solar absorbers.- 5. Intrinsic solar selective materials.- 6. Semiconductor-metal tandems.- 7. Metal-dielectric-based multilayers.- 8. Metal-dielectric-composited cermets.- 9. Nano-textured surface structures.- 10. Photonic-crystal-based metamaterials and designs.- 11. Experimental methods.- 12. Broad applications of the solar selective absorbers.- 13. Summary.- 14. Acknowledgement.