Photovoltaic Module Cooling Techniques: Types, Applications, Assessment Methods, and Current and Future Challenges
Autor Sakhr M. Sultan, Kamaruzzaman Bin Sopianen Limba Engleză Paperback – iul 2025
Subsequent chapters examine, in detail, various methods and approaches, including temperature dependent PV efficiency and power difference factors, PV cooling techniques, production cost effectiveness, the use of power ratio for evaluating performance of PV coolers when different PV reference power values are used, lifespan effectiveness factor and critical mass flow rate for evaluating performance of cooling techniques, and the definition and use of energy per weight, volume and area factors for assessing performance. This book is of interest to all those working on photovoltaics performance, efficiency, and development, including researchers, advanced students, faculty, engineers, R&D, manufacturers, designers, and policymakers.
- Presents cutting-edge photovoltaic module cooling techniques, types, and applications
- Covers established and new assessment methods to evaluate performance of module cooling techniques
- Addresses cost effectiveness, lifecycle, and current and future challenges in research and implementation
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Specificații
ISBN-13: 9780443339370
ISBN-10: 0443339376
Pagini: 300
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443339376
Pagini: 300
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction to Renewable Energy and Photovoltaics
2. Existing Photovoltaic Cooling Techniques: Types and Applications
3. Temperature Dependent Photovoltaic Efficiency and Power Difference Factors
4. The Cost Effectiveness Factor and Photovoltaic Cooling
5. Photovoltaic Power Ratio and Photovoltaic Cooling
6. Lifespan Effectiveness Factor and Critical Mass Flow Rate – Photovoltaic Cooling Techniques
7. Energy Per Weight, Volume, and Area Factors – Photovoltaic Cooling Techniques
8. Photovoltaic Cooling Techniques: Current and Future Challenges, and Recommendations
2. Existing Photovoltaic Cooling Techniques: Types and Applications
3. Temperature Dependent Photovoltaic Efficiency and Power Difference Factors
4. The Cost Effectiveness Factor and Photovoltaic Cooling
5. Photovoltaic Power Ratio and Photovoltaic Cooling
6. Lifespan Effectiveness Factor and Critical Mass Flow Rate – Photovoltaic Cooling Techniques
7. Energy Per Weight, Volume, and Area Factors – Photovoltaic Cooling Techniques
8. Photovoltaic Cooling Techniques: Current and Future Challenges, and Recommendations