Wind Energy Engineering: A Handbook for Onshore and Offshore Wind TurbinesTrevor Letcher Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines, Second Edition continues to be the most advanced, up-to-date and research-focused text on all aspects of wind energy engineering. Covering a wider spectrum of topics in the field of wind turbines (offshore and onshore), this new edition includes new intelligent turbine designs and optimization, current challenges and efficiencies, remote sensing and smart monitoring, and key areas of advancement, such as floating wind turbines. Each chapter includes a research overview with a detailed analysis and new case studies looking at how recent research developments can be applied. Written by some of the most forward-thinking professionals in the field, and giving a complete examination of one of the most promising and efficient sources of renewable energy, this book is an invaluable reference into this cross-disciplinary field for engineers. - Offers an all-around understanding of the links between worldwide resources, including wind turbine technology, electricity and environmental issues, and economics - Provide the very latest research and development in over 33 fields of endeavor related to wind power - Includes extensive sets of references in each chapter, giving readers all the very latest thinking and information on each topic |
Contents
| 21 | |
C Wind turbine technology | 87 |
D Storing energy | 397 |
E Environmental impacts of wind energy | 411 |
Other editions - View all
Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines Trevor Letcher Limited preview - 2017 |
Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines Trevor M. Letcher No preview available - 2017 |
Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines Trevor Letcher No preview available - 2023 |
Common terms and phrases
aerodynamic airfoil analysis application assessment Available Bhattacharya Bohai Sea capacity carbon China climate change components cost cycle cycle assessment cyclic loading diameter distribution downburst dynamic earthquake effects electricity emissions Engineering environment environmental estimate factor failure FIGURE floating forecasting gearbox global grid hybrid foundation impact increase industry installed landscape layer LCOE methods micro-wind monopile natural frequency noise reduction offshore wind farms offshore wind turbines onshore operation optimization output OWTs parameters performance pile head potential power system prediction reduce regions reliability Renew Sustain Energy renewable energy requirements rotation rotor seismic simulation soil-structure interaction stiffness storage structure Sustain Energy Rev Table technologies technology readiness level tion types typically United Kingdom University of Surrey variable vibration Wang wave wind energy wind power wind resource wind speed wind turbine towers windmills


