Reprint

Wind Turbine Power Optimization Technology

Edited by
May 2020
138 pages
  • ISBN978-3-03928-933-2 (Paperback)
  • ISBN978-3-03928-934-9 (PDF)

This book is a reprint of the Special Issue Wind Turbine Power Optimization Technology that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary
Wind turbines are one of the most promising renewable energy technologies, and this motivates fertile research activity about developments in power optimization. This topic covers a wide range of aspects, from the research on aerodynamics and control design to the industrial applications about on-site wind turbine performance control and monitoring. This Special Issue collects seven research papers about several innovative aspects of the multi-faceted topic of wind turbine power optimization technology. The seven research papers deal respectively with the aerodynamic optimization of wind turbine blades through Gurney flaps; optimization of blade design for large offshore wind turbines; control design optimization of large wind turbines through the analysis of the competing objectives of energy yield maximization and fatigue loads minimization; design optimization of a tension leg platform for floating wind turbines; innovative methods for the assessment of wind turbine optimization technologies operating on site; optimization of multiple wake interactions modeling through the introduction of a mixing coefficient in the energy balance method; and optimization of the dynamic stall control of vertical-axis wind turbines through plasma actuators. This Special Issue presents remarkable research activities in the timely subject of wind turbine power optimization technology, covering various aspects. The collection is believed to be beneficial to readers and contribute to the wind power industry.
Format
  • Paperback
License
© 2020 by the authors; CC BY-NC-ND license
Keywords
wind turbine; flow control; Gurney flap; aerodynamics; ANN; wind farm; analytical model; wake interaction model; turbulence intensity; mixing coefficient; wind farm efficiency; floating offshore wind turbine; modified Morison equation; omega arithmetic method; tension leg platform; hydrodynamic motion response; wind energy; wind turbines; control and optimization; wind turbine; PSO algorithm; FAST; time-domain coupled model; blade optimization; DBD plasma actuation; dynamic stall; vertical-axis wind turbine; active flow control; variable-speed wind turbine; tower fatigue; drive-shaft torsion; nonlinear economic-model predictive control; wind energy; wind turbines; control and optimization; aerodynamics; structures