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Durability and Reliability of Polymers and Other Materials in Photovoltaic Modules

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2019
ISBN13: 9780128115459
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Elsevier Science e druk, 2019 9780128115459
Onderdeel van serie Plastics Design Library
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Durability and Reliability of Polymers and Other Materials in Photovoltaic Modules describes the durability and reliability behavior of polymers used in Si-photovoltaic modules and systems, particularly in terms of physical aging and degradation process/mechanisms, characterization methods, accelerated exposure chamber and testing, module level testing, and service life prediction. The book compares polymeric materials to traditional materials used in solar applications, explaining the degradation pathways of the different elements of a photovoltaic module, including encapsulant, front sheet, back sheet, wires and connectors, adhesives, sealants, and more.

In addition, users will find sections on the tests needed for the evaluation of polymer degradation and aging, as well as accelerated tests to aid in materials selection. As demand for photovoltaics continues to grow globally, with polymer photovoltaics offering significantly lower production costs compared to earlier approaches, this book will serve as a welcome resource on new avenues.

Specificaties

ISBN13:9780128115459
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. Introduction to Solar Photovoltaic Cells<br>2. Criteria for the Selection of PV Cell Components<br>3. Overview: Power Degradation and Failure of PV Systems<br>4. Overview: durability vs. reliability of common PV polymers/materials<br>5. Degradation Science and Pathways of PV Systems<br>6. Degradation processes of PV cells and interconnections<br>7. Degradation process and mechanism of Encapsulant<br>8. Degradation process and mechanism of Back Sheet<br>9. Unique aspects of BIPV Durability and Reliability, including roof integration<br>10. Degradation processes and mechanisms of PV Wires and Connectors<br>11. Degradation processes and mechanisms of PV System Adhesives/Sealants and Junction Boxes<br>12. Accelerated environmental chambers and testing of PV: Q-Lab, Atlas and SPHERE<br>13. Results of Module Level Testing<br>14. Service Life Prediction of PV via materials degradation<br>15. Future Perspectives</p>

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        Durability and Reliability of Polymers and Other Materials in Photovoltaic Modules