Prosjekter
Kontaktperson, prosjekter
Laboratorier
Kontaktperson, laboratorier
Fagområder
Kontaktperson, fagområder
Publikasjoner
- Performance of a Cable-Driven Robot Used for Cyber–Physical Testing of Floating Wind Turbines
- A Numerical Assessment of Mooring System Modelling Uncertainties in Hydrodynamic Model Testing of Floating Wind Turbines
- Numerical simulation and comparison with experiments of a floating wind turbine using a direct forcing method
- Identification of wave drift force QTFs for the INO WINDMOOR floating wind turbine based on model test data and comparison with potential flow predictions Les publikasjonen
- Calibration of a Time-Domain Hydrodynamic Model for A 12 MW Semi-Submersible Floating Wind Turbine
- Experimental Investigation of the Coupling Between Aero- and Hydrodynamical Loads On A 12 MW Semi-Submersible Floating Wind Turbine
- Experimental study on the effect of second order wavemaker theory on the response of a flexible large diameter monopile in irregular sea Les publikasjonen
- Validation of Numerical Wave Tank Simulations Using REEF3D With JONSWAP Spectra in Intermediate Water Depth Les publikasjonen
- Observations from hydrodynamic testing of a flexible, large-diameter monopile in irregular waves Les publikasjonen
- Hybrid Model Tests for Floating Offshore Wind Turbines
Annen formidling
- Effects of Motion, Waves, and Current on Heave Plate Hydrodynamics in Floating Wind Turbines
- A Numerical Assessment of Mooring System Modelling Uncertainties in Hydrodynamic Model Testing of Floating Wind Turbines
- SINTEF Ocean assists Principle Power when performing tests at the US Navy
- An ongoing revolution in model testing techniques
- SINTEF Ocean assists Principle Power when performing tests at the US Navy
- Mooring optimization and offshore wind
- Identification of wave drift force QTFs for the INO WINDMOOR floating wind turbine based on model test data and comparison with potential flow predictions
- EXPERIMENTAL INVESTIGATION OF THE COUPLING BETWEEN AERO- AND HYDRODYNAMICAL LOADS ON A 12 MW SEMI-SUBMERSIBLE FLOATING WIND TURBINE
- Calibration of a Time-Domain Hydrodynamic Model for A 12 MW Semi-Submersible Floating Wind Turbine
- Denne testmetoden skal gi oss billigere havvind - KPN WINDMOOR - Advanced Wave and Wind Load Models for Floating Wind Turbine Mooring System Design