Numerical Modelling of Offshore Wind Energy Systems (Wind Energy Engineering)

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Numerical Modelling of Offshore Wind Energy Systems (Wind Energy Engineering)

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 450 p.
  • 言語 ENG
  • 商品コード 9780443332043

Full Description

Numerical Modelling of Offshore Wind Energy Systems is a thorough, systematic guide to numerical modelling and code development for researchers, students, and engineers in the offshore wind energy field. The book begins by introducing offshore wind energy and reviewing widely-used numerical simulation tools and the fundamental knowledge essential for performing fully coupled analysis of offshore wind turbines. The second part of the book focuses on numerical modelling techniques for fixed-bottom turbines, followed by detailed coverage of floating turbines. In both cases, in-depth case studies are presented to help readers to understand the dynamic behavior of the relevant systems. The final section of the book explores numerical modelling techniques as applied to novel concepts and future trends, including twin-rotor wind energy systems, integration with marine energy resources, multi-energy hybrid floating systems, and other areas. This latest volume in the Elsevier Wind Energy Engineering Series is of interest to all those involved in the design, development, and installation of offshore wind turbines, floating energy systems, and wave-wind-current hybrid systems, including researchers, students, engineers, and other practitioners.

Contents

Part I: Numerical Modelling Methods and Simulation Tools of Offshore Wind Energy Systems
1. Introduction to Offshore Wind Energy
2. Numerical Simulation Tools and Methodologies for Offshore Wind Turbines

Part II: Numerical Modelling and Case Studies for Fixed-Bottom Offshore Wind Turbines
3. Development of Soil-Structure Interaction Modules for Offshore Wind Turbines
4. Seismic Analysis and Structural Control of Offshore Wind Turbines
5. Case Study 1 - Optimization of Tuned Mass Damper Control Under Earthquake Events
6. Case Study 2 - Intensity and Directionality of Earthquake Excitations

Part III: Numerical Modelling and Case Studies for Floating Offshore Wind Turbines
7. Development and Validation of FAST2AQWA
8. Case Study 3 - Application of FAST2AQWA for the TELWIND and TetraSpar Concepts
9. Case Study 4 - Application of FAST2AQWA for the Design of a 17MW Floating Platform in a Practical Project

Part IV: Future Trends of Offshore Wind Energy Systems
10. Twin-Rotor Wind Turbine Concepts
11. Integration with Marine Energy Resources
12. Future Trends in Offshore Wind Energy

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