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Fatigue Data Editing for Blades of Horizontal Axis Wind Turbines
Details
In predicting performance of wind turbines, the blade element momentum (BEM) theory is still commonly used by wind turbine designers and researchers. This book deals with several up-to-date models added to the BEM theory to get more realistic prediction. In evaluating fatigue damage of wind turbine blade, stress-life approach and Miner's linear cumulative damage rule are mentioned. Wind turbine blades are the most critical components of HAWT. Full-scale blade fatigue testing is required to verify that the blades possess the strength and service life specified in the design. Unfortunately, the test must be run for a long time period. This problem led the blade testing laboratories to accelerate fatigue testing time. To achieve the objective, two novel methods called STFT- and WT-based fatigue damage part extracting methods are used to generate the edited stress-time history. Blade testing laboratories can use this history to accelerate fatigue testing time. STFT- and WT-based fatigue damage part extracting methods proposed in this book are suggested as alternative methods in accelerating fatigue testing time, especially for the field of wind turbine engineering.
Autorentext
In 2012, Panu received his PhD in Mechanical Engineering from Northumbria University at Newcastle with scholarship from the National Science and Technology Development Agency (NSTDA), Thailand. At present, Panu works at Department of Mechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Thanyaburi (RMUTT), Thailand.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783659803284
- Genre Mechanical Engineering
- Sprache Englisch
- Anzahl Seiten 208
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm x T14mm
- Jahr 2015
- EAN 9783659803284
- Format Kartonierter Einband
- ISBN 3659803286
- Veröffentlichung 12.11.2015
- Titel Fatigue Data Editing for Blades of Horizontal Axis Wind Turbines
- Autor Panu Pratumnopharat
- Gewicht 328g