Model adaption of generic rotor blades for runtime extension assessments using optical 3D measurement technology and experimental modal analysis mail: tel: +49 (0) 441 - 7708 - 3166 room: G 207
Albers, S.; Engel, M.; Hülsewede, F.; Göring, M.; Luhmann, T.(2023):
Untersuchungen zur KI-gestützten Materialklassifikation aus Punktwolken und Bilddaten.Allgemeine Vermessungs-Nachrichten, 1-2, 2023; S. 11-19.
Wester, T.; Kröger, L.; Langidis, A.; Nietiedt, S.; Rofallski, R.; Göring, M.; Luhmann, T.; Peinke, J.; Gülker, G.(2022):
Fluid-structure interaction experiments on a scaled model wind turbine under tailored inow conditions using PIV and photogrammetry.20th International Symposium on Applications of Laser and Imaging Techniques to Fluid Mechanics, Lissabon
Hülsewede, F.; Albers, S.; Engel, M.; Göring, M.; Luhmann, T.(2022):
Untersuchungen zur KI-gestützten Materialklassifikation aus Punktwolken und Bilddaten.Luhmann/Schumacher (eds.): Photogrammetrie, Laserscanning, Optische 3D-Messtechnik – Beiträge der 20. Oldenburger 3D-Tage, Wichmann Verlag, Offenbach/Berlin, pp. 278-287
Göring, M.:
Measurement of Rotor Blade Deformations of Wind Energy Converters with Laser Scanners.ISPRS Workshop Laser Scanning, Antalya, Türkei,
November 2013
Göring, M.:
Deformationsmessung mit terrestrischem Laserscanning und Photogrammetrie.Oldenburger 3D-Tage, Oldenburg,
Februar 2013
funded by: Federal Ministry for Economic Affairs and Climate Action
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 deter... more
funded by: European Fonds for Regional Development (EFRE)
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 influ... more
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 more
Analyse von Registrierungsverfahren und Instrumentenfehlern beim Einsatz von terrestrischen Laserscannern am Beispiel von komplexen Kirchenbauwerken (2019/8)