Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets integrates state-of-the-art information and discusses future developments and their significance to the improvement of the renewable energy industry. Renewable energy assets are complex systems with several critical components that require inspection and adequate maintenance in order to ensure their high availability and uninterrupted operation. This is the first book to apply NDT and condition monitoring to these complex systems.

  • Covers inspection and condition monitoring for a broad range of renewable energy systems, including wind turbines, wave energy devices, CSP and photovoltaic plants, and biofuel/biomass power plants
  • Includes a review of common types of NDT techniques
  • Discusses future developments in NDT and condition monitoring for renewable energy systems
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Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets integrates state-of-the-art information and discusses future developments and their significance to the improvement of the renewable energy industry. Renewable energy assets are complex systems with several critical components that require inspection and adequate maintenance in order to ensure their high availability and uninterrupted operation. This is the first book to apply NDT and condition monitoring to these complex systems.

  • Covers inspection and condition monitoring for a broad range of renewable energy systems, including wind turbines, wave energy devices, CSP and photovoltaic plants, and biofuel/biomass power plants
  • Includes a review of common types of NDT techniques
  • Discusses future developments in NDT and condition monitoring for renewable energy systems
127.99 In Stock
Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets

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Overview

Non-Destructive Testing and Condition Monitoring Techniques for Renewable Energy Industrial Assets integrates state-of-the-art information and discusses future developments and their significance to the improvement of the renewable energy industry. Renewable energy assets are complex systems with several critical components that require inspection and adequate maintenance in order to ensure their high availability and uninterrupted operation. This is the first book to apply NDT and condition monitoring to these complex systems.

  • Covers inspection and condition monitoring for a broad range of renewable energy systems, including wind turbines, wave energy devices, CSP and photovoltaic plants, and biofuel/biomass power plants
  • Includes a review of common types of NDT techniques
  • Discusses future developments in NDT and condition monitoring for renewable energy systems

Product Details

ISBN-13: 9780128097472
Publisher: Elsevier Science
Publication date: 09/04/2019
Sold by: Barnes & Noble
Format: eBook
Pages: 217
File size: 35 MB
Note: This product may take a few minutes to download.

About the Author

Mayorkinos Papaelias is a Reader in NDT and Condition Monitoring in the School of Metallogy and Materials at the University of Birmingham, UK. Dr Papaelias leads the research activity in Non-Destructive Testing and Structural Health Condition Monitoring at the Birmingham Railway Centre for Research and Education and conducts research in structural health condition monitoring of wind turbine towers, and advanced condition monitoring of wind turbine gearboxes and rotating machinery. He served as a technical consultant to TWI, ENGITEC, Innovative Technology and Science Ltd, and Instituto de Soldadura e Qualidade. He is editor of two books on fault detection and condition monitoring, and has contributed chapters to books in fault detection and rail inspection. Mayorkinos is chairman of the Education Committee of the International Society for Condition Monitoring of the British Institute of Non-Destructive Testing.
Professor Fausto works as Professor at Universidad De Castilla-La Mancha, Spain. Honorary Senior Research Fellow at Birmingham University, UK, Lecturer at the Postgraduate European Institute. He has published more than 150 papers and is author and editor of 31 books (Elsevier, Springer, Pearson, Mc-GrawHill, Intech, IGI, Marcombo, AlfaOmega). He is Editor of 5 Int. Journals, Committee Member more than 40 Int. Conferences. He has been Principal Investigator in 4 European Projects, 6 National Projects, and more than 150 projects for Universities, Companies, etc. His main interests are: Artificial Intelligence, Maintenance, Management, Renewable Energy, Transport, Advanced Analytics, Data Science. He is an expert in the European Union in AI4People (EISMD), and ESF and Director of www.ingeniumgroup.eu.
Dr. Alexander Karyotakis after completing his PhD on the optimization of offshore wind farm O&M strategies and reliability of wind turbines at University College London (UCL), has been working as a coordinator and business developer on renewable energy projects in Europe and the USA. He has participated in several international R&D programs in renewables including NIMO, Optimus and SolarFox, having published highly cited journal and conference papers in renewables. In 2010 he joined TERNA ENERGY (Member of GEK TERNA Group), where he coordinated the development, engineering, construction and operation of large onshore wind projects in Europe and the USA, while supervised the first stage technical design and conceptual development of offshore wind farms (conventional and floating) in southern Europe. He currently is the Director of Concessions at TERNA ENERGY overlooking the development and operation of ICT and Waste to Energy projects.

Table of Contents

1. Introduction2. Significance of NDT and Condition Monitoring for Renewable Energy Industry3. Trends in maintenance strategies for renewable energy assets4. NDT and condition monitoring for wind turbines5. Online evaluation of wind turbine power converters6. Wind turbine Gearboxes7. Onshore vs. Offshore Wind Turbines8. Condition Monitoring and inspection strategies for tidal turbines9. Reliable Wave Energy Devices10. Inspection and Condition Monitoring for Concentrated Solar Power Plants11. Remote Condition Monitoring for Photovoltaic Systems12. Inspection and Condition Monitoring Requirements of Biofuel and Biomass Power Plants13. General NDT Techniques14. Application of Acoustic Emission as an Effective Condition Monitoring Technique15. Vibration Analysis Overview16. Value of Long Range Ultrasonics17. ROV applications18. Effective automated control19. SCADA Systems and Effective Data Management20. Future Developments in NDT and Condition Monitoring

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An examination of NDT methods used to maximize performance and availability of complex renewable energy system assets and prevent unexpected failures

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