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Wind Turbine Aerodynamics and Aeroelasticity using Vortex Based Methods
Branlard, Emmanuel Simon Pierre
(PhD Student)
Gaunaa, Mac
(Main Supervisor)
Sørensen, Jens Nørkær
(Examiner)
Hjort, Søren
(Examiner)
van Kuik, Gijs A.M.
(Examiner)
Overview
Fingerprint
Research output
(1)
Project Details
Status
Finished
Effective start/end date
01/04/2012
→
22/06/2015
Funding
Eksternt finansieret virksomhed
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Fingerprint
Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint.
Vortex
Engineering
100%
Aeroelasticity
Engineering
100%
Wind Turbine
Engineering
100%
Blade Element Momentum
Engineering
62%
Vortex Model
Engineering
25%
Computer Simulation
Engineering
12%
Superposition
Engineering
12%
Loss Factor
Engineering
12%
Research output
Research output per year
2015
2015
2015
1
Ph.D. thesis
Research output per year
Research output per year
Analysis of wind turbine aerodynamics and aeroelasticity using vortex-based methods
Branlard, E. S. P.,
Apr 2015
,
DTU Wind Energy
.
219 p.
(DTU Wind Energy PhD; No. 0052(EN)).
Research output
:
Book/Report
›
Ph.D. thesis
Open Access
File
Aeroelasticity
100%
Vortex
100%
Wind Turbine
100%
Blade Element Momentum
62%
Vortex Model
25%
3696
Downloads (Pure)