This is where pitch control and yaw systems come into play: they precisely control rotor blades and the nacelle and are crucial for energy yield, safety an...
In this video we explain exactly how the pitch and yaw movements work. Modern pitch systems, such as our PitchOne, regul…
This study considers optimizing the planform of wind turbine blades to ultimately enhance wind plant controls, namely, w…
Abstract: Yaw misalignment is known to affect blade root loads on wind turbines. Most of previous studies concentrate on…
The faster the spin of the turbine blades relative to the wind speed, the greater the impact on the downstream wake prof…
These findings underscore the importance of balancing configuration strategies with spatial and economic constraints, of…
Using the FLOw Redirection and Induction in Steady State (FLORIS) engineering wind farm control tool, we compare the per…
Pointing turbines slightly away from oncoming wind — called wake-steering — can reduce that interference and improve bot…
This post will delve into the intricate world of wind turbine blade support systems, exploring their design, function, a…
In this short video, we demonstrate the simulation of 12 wind turbines in a farm setting, highlighting the effectiveness…
Wind turbines are becoming more popular in residential settings because of the reduced cost of electricity and many peop…
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