Wind Energy Engineering: A Handbook for Onshore and Offshore Wind TurbinesTrevor Letcher Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines is the most advanced, up-to-date and research-focused text on all aspects of wind energy engineering. Wind energy is pivotal in global electricity generation and for achieving future essential energy demands and targets. In this fast moving field this must-have edition starts with an in-depth look at the present state of wind integration and distribution worldwide, and continues with a high-level assessment of the advances in turbine technology and how the investment, planning, and economic infrastructure can support those innovations. 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. - Contains analysis of the latest high-level research and explores real world application potential in relation to the developments - Uses system international (SI) units and imperial units throughout to appeal to global engineers - Offers new case studies from a world expert in the field - Covers the latest research developments in this fast moving, vital subject |
Contents
| 15 | |
III Wind Turbine Technology | 125 |
IV Generation of Electricity | 375 |
V Environmental Impacts of Wind Energy | 437 |
VI Financial ModelingWind Economics | 535 |
Other editions - View all
Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines Trevor Letcher Limited preview - 2023 |
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 average Bhattacharya bine Bohai Sea capacity factor carbon carbon intensity China coefficient components cost cycle assessment cyclic loading diameter distribution dynamic electricity emissions Enercon energy storage environmental equipment estimate failure FIGURE flexibility forecasting foundation gearbox Germany global wind grid HVDC impact increase installed capacity integration landscape method monopile mounted turbines MTCGOD natural frequency nondimensional offshore wind farm offshore wind turbines onshore operation output pile potential power plants power system prediction production projects ratio reactive power regions reliability engineer renewable energy rotation rotor solar stiffness strain structural technologies tion transmission types typically United Kingdom variable VAWT velocity Vestas wind capacity wind energy wind industry wind power wind resources wind speed wind tur wind turbine blades wind turbine towers windmills


