Reprint

Design, Fabrication and Performance of Wind Turbines 2020

Edited by
July 2021
120 pages
  • ISBN978-3-0365-0314-1 (Hardback)
  • ISBN978-3-0365-0315-8 (PDF)

This book is a reprint of the Special Issue Design, Fabrication and Performance of Wind Turbines 2020 that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary
From small-scale vertical axis wind turbines for urban usage to large-scale horizontal axis wind turbines for offshore wind farms, design, fabrication, and optimization technologies are highly required to manage wind energy effectively. Moreover, some new opportunities, such as in wind farm design, fluid–structure interaction, aero-acoustics, fabrication methods and performance tests by experimental and computational fluid dynamics should be engaged in modern wind turbine communities. The basic objectives of this book include improving the reliability and promoting the high efficiency of wind turbines as well as their dynamic performance, reducing wind turbine-generated noise and improving power generation efficiencies through high-fidelity approaches. Students, scholars, and engineers who manage such a wide range of wind turbine scales and usages, design, fabrication, and performance test protocols for various wind turbines, are highly recommended to read this book.
Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
wind energy centrifugal pump (WECP); factorial experiment design (FED); optimization; high efficiency area; computational fluid dynamics (CFD); design optimization; wind turbine blade; blade geometry linearization; tip speed ratio; simulated annealing algorithm; control scheme; variable-speed pitch; wind turbine (WT); zero-voltage ride through (ZVRT); low-voltage ride through (LVRT); overspeed protection control (OPC); furling; limited-angle torque actuator; stepper motor; micro wind turbine; finite element analysis; RCS reduction; wind turbines; reshaping methods; onshore wind farm; flow analysis; annual energy production; dynamic wind turbine model; yaw motion; peak shaver