Advances in Wind Turbine Blade Design and Materials
- 2 Edición - 14 de enero de 2023
- Última edición
- Editores: Povl Brondsted, Rogier P. L Nijssen, Stergios Goutianos
- Idioma: Inglés
Advances in Wind Turbine Blade Design and Materials, Second Edition, builds on the thorough review of the design and functionality of wind turbine rotor blades and the requir… Leer más
Descripción
Descripción
Advances in Wind Turbine Blade Design and Materials, Second Edition, builds on the thorough review of the design and functionality of wind turbine rotor blades and the requirements and challenges for composite materials used in both current and future designs of wind turbine blades.
Puntos claves
Puntos claves
- Reviews the design and functionality of wind turbine rotor blades
- Examines the requirements and challenges for composite materials used in both current and future designs of wind turbine blades
- Provides an invaluable reference for researchers and innovators in the field of wind
De interès para
De interès para
Materials scientists and engineers; Wind turbine blade manufacturers and maintenance technicians; Wind industry professionals, composite materials professionals, resin and fiber/fabric professionals; Scientists, researchers and academics in the field of composite materials and structures
Índice
Índice
Part I: Wind turbine blade design: challenges and developments
1. Introduction to wind turbine blade design
2. Loads on wind turbine blades
3. Aerodynamic design of wind turbine rotors
4. Aerodynamic characteristics of wind turbine blade airfoils
5. Aeroelastic design of wind turbine blades
Part II: Fatigue behaviour of composite wind turbine blades
6. Fatigue as a design driver for composite wind turbine blades
7. Effects of resin and reinforcement variations on fatigue resistance of wind turbine blades
8. Fatigue life prediction of wind turbine blade composite materials
9. Micromechanical modelling of wind turbine blade materials
10. Probabilistic design of wind turbine blades
Part III: Advances in wind turbine blade materials, development and testing
11. Biobased composites: materials, properties and potential applications as wind turbine blade materials
12. Surface protection and coatings for wind turbine rotor blades
13. Design, manufacture and testing of small wind turbine blades
14. Wind turbine blade structural performance testing
1. Introduction to wind turbine blade design
2. Loads on wind turbine blades
3. Aerodynamic design of wind turbine rotors
4. Aerodynamic characteristics of wind turbine blade airfoils
5. Aeroelastic design of wind turbine blades
Part II: Fatigue behaviour of composite wind turbine blades
6. Fatigue as a design driver for composite wind turbine blades
7. Effects of resin and reinforcement variations on fatigue resistance of wind turbine blades
8. Fatigue life prediction of wind turbine blade composite materials
9. Micromechanical modelling of wind turbine blade materials
10. Probabilistic design of wind turbine blades
Part III: Advances in wind turbine blade materials, development and testing
11. Biobased composites: materials, properties and potential applications as wind turbine blade materials
12. Surface protection and coatings for wind turbine rotor blades
13. Design, manufacture and testing of small wind turbine blades
14. Wind turbine blade structural performance testing
Detalles del producto
Detalles del producto
- Edición: 2
- Última edición
- Publicado: 14 de enero de 2023
- Idioma: Inglés
Sobre los editores
Sobre los editores
PB
Povl Brondsted
Prof. Povl Brøndsted leads a research program on composites and material mechanics at the Materials Research Department in the National Laboratory for Sustainable Energy at the Technical University of Denmark.
Afiliaciones y experiencia
Professor, Risø-DTU National Laboratory of Sustainable Energy, DenmarkRN
Rogier P. L Nijssen
Dr Rogier Nijssen is a research scientist at the Knowledge Centre Wind Turbine Materials and Constructions, The Netherlands. Their research has been both in research contracts and in public projects. Brøndsted and Nijssen have worked together in material research consortia such as the European Optimat and Upwind projects.
Afiliaciones y experiencia
Research Scientist, Wind Turbine Materials and Constructions (WMC), The NetherlandsSG
Stergios Goutianos
Dr Stergios Goutianos is Senior Researcher, Department of Wind Energy, Composites and Materials Mechanics, DTU, Danmarks Tekniske Universitet
Areas of interest, inter-fibre, fibrous networks, fracture resistance, mix load, fatigue testing in wind turbines
Afiliaciones y experiencia
Senior Researcher, Department of Wind Energy, Composites and Materials Mechanics, DTU, Danmarks Tekniske Universitet, DemarkVer libro en ScienceDirect
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Lee Advances in Wind Turbine Blade Design and Materials en ScienceDirect