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--- Timezone: CEST
Creation date: 2023-03-30
Creation time: 23-02-01
--- Number of references
3
article
Barholomay2021
Pressure-based lift estimation and its application to feed forward load control employing trailing-edge flaps
eawe, Wind Energy Science
2021
6
221 - 245
This experimental load control study presents results of an active trailing-edge flap feedforward controller for wind turbine applications. The controller input is derived from pressure-based lift estimation methods that rely either on a quasi-steady method, based on a three-hole probe, or on an unsteady method that is based on three selected surface pressure ports. Furthermore, a standard feedback controller, based on force balance measurements, is compared to the feedforward control. A Clark-Y airfoil is employed for the wing that is equipped with a trailing-edge flap of x=c D 30% chordwise extension. Inflow disturbances are created by a two-dimensional active grid. The Reynolds number is Re D 290000, and reduced frequencies of k D 0:07 up to k D 0:32 are analyzed. Within the first part of the paper, the lift estimation methods are compared. The surface-pressure-based method shows generally more accurate results, whereas the three-hole probe estimate overpredicts the lift amplitudes with increasing frequencies. Nonetheless, employing the latter as input to the feedforward controller is more promising as a beneficial phase lead is introduced by this method. A successful load alleviation was achieved up to reduced frequencies of k D 0:192.
ttps://doi.org/10.5194/wes-6-221-2021
doi.org/10.5194/wes-6-221-2021
S.Bartholomay
T.Wester
S.Perez-Becker
S.Konze
C.Menzel
M.Hölling
A.Spickenheuer
J.Peinke
C. N.Nayeri
C. OPaschereit
KilianOberleithner K.
article
Alber2020
Aerodynamic effects of Gurney Flaps on the rotor blades of a research wind turbine
Wind Energy Science
2020
5
4
1645--1662
https://wes.copernicus.org/articles/5/1645/2020/
10.5194/wes-5-1645-2020
J.Alber
R.Soto-Valle
M.Manolesos
S.Bartholomay
C. N.Nayeri
M.Schönlau
C.Menzel
C. O.Paschereit
J.Twele
J.Fortmann
inbook
Menzel2017
Visualisierungswindkanal (ViWiKa) für Messe, Forschung und Lehre auf Basis von myRIO-1900
2017
430 - 434
http://www.etz.de/files/10_02_menzel-holst-fischer.pdf
Rahman J., Heinze R.
VDE Verlag
Forschung und Lehre in Virtuelle Instrumente in der Praxis 2017
978-3-800-4441-1
C.Menzel
D.Holst
J.Fischer
C. N.Nayeri
C. O.Paschereit