Books and Papers
Erfassung von Fluid-Struktur Kopplung einer Modell Windenergieanlage in Windkanal-Experimenten
2020
Luhmann/Schumacher (eds.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 19. Oldenburger 3D-Tage, Wichmann Verlag, Offenbach/Berlin
Experimental study of fluid structure interaction at a model wind turbine blade using optical measurement techniques
2020
The Science of Making Torque from Wind (TORQUE 2020), Delft
From unsteady inflow to deformation - An experimental study on the aerodynamics and structural behavior of a rotor blade
2020
XXV ICTAM, 23-28 August 2020, Milano, Italy
Measurement of fluid-structure interaction of wind turbines in wind tunnel experiments: Concept and first results
2019
ISPRS International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W18, 143–149
Aufbau und Untersuchung einer Messeinrichtung zur Deformationsmessung von bewegten Rotorblättern im Laborversuch mittels optischer 3D-Messtechnik
2017
In Luhmann/Schumacher (Hrsg.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 16. Oldenburger 3D-Tage, Wichmann Verlag, Offenbach/Berlin, S. 83-94
Presentations
Entwicklung eines berührungslosen und markierungsfreien Messverfahrens zur Erfassung bewegter Rotorblätter von Windkraftanlagen - Einflussfaktoren auf die Distanzmessung eines Laserscanners
September 2015
Jade2Pro-Kolloquium
An Approach for the Measurement of Rotor Blade Deformations during Operation
März 2015
2nd Conference for Wind Power Drives, Aachen
Projects
Subproject Optical 3D Measurement Technology:
For making of reliable wind turbine runtime extension assessments, a new method is being developed that takes into account the geometry and modal properties of the respective rotor blade. These are determined using optical 3D measure... more
For making of reliable wind turbine runtime extension assessments, a new method is being developed that takes into account the geometry and modal properties of the respective rotor blade. These are determined using optical 3D measure... more
The aim of the collaborative project is the simultaneous geometric recording of turbulent wind flow fields (fluid behaviors) and deformations of rotor blade surfaces of wind energy systems. This helps to generate new knowledge about the influence of wind loads on wind ene...
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The aim of the PhD project is to develop an innovative approach for detection of the dynamic states of rotor blades during operation without contact and targeting
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