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Numerical Simulation of Wind Turbines
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The book contains the research contributions belonging to the Special Issue "Numerical Simulation of Wind Turbines", published in 2020-2021. They consist of 15 original research papers and 1 editorial. Different topics are discussed, from innovative design solutions for large and small wind turbine to control, from advanced simulation techniques to noise prediction. The variety of methods used in the research contributions testifies the need for a holistic approach to the design and simulation of modern wind turbines and will be able to stimulate the interest of the wind energy community.
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Keywords
- actuator disk model
- actuator line method
- actuator surface model
- AEP
- Aerodynamics
- ANSYS Fluent
- atmospheric boundary layer
- blade damage
- blade load
- CFD
- coherent structures
- Composite materials
- composites
- computational aeroacoustics
- computational fluid dynamics (CFD)
- computational fluid dynamics (CFD), wind energy
- Darrieus
- deformable blades
- Delayed DES
- dynamic mode decomposition
- engineering codes
- Experiments
- Fluid-Structure Interaction (FSI)
- fluid–structure interaction
- fluid–structure interaction (FSI)
- Gurney flap
- gusts
- H-Darrieus
- icewind turbine
- individual pitch control
- large-eddy simulation
- large-scale wind turbine balde
- lifting line free vortex wake
- load mitigation
- low Mach number turbulent flows
- micro wind power generation
- n/a
- NACA0012 airfoil
- pitch
- power augmentation
- power coefficient
- RBF
- regularization kernel
- renewable energy
- rotor blade
- Savonius turbine
- small wind turbine (SWT)
- sound source detection
- stall
- static torque
- Technology, engineering, agriculture
- Technology: general issues
- three-dimensional simulation
- tip vortices
- turbine size
- turbine wake
- Turbulence
- Uncertainty Quantification
- VAWT
- vertical axis wind turbine (VAWT)
- vortex methods
- wake meandering
- Wind energy
- wind turbine
- wind turbine control
- wind turbine simulation
- wind turbine wake
- winglet