Michael Borg
Michael Borg
Stiesdal Offshore Technologies A/S | BORG R&D
Bekræftet mail på stiesdal.com
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Offshore floating vertical axis wind turbines, dynamics modelling state of the art. part I: Aerodynamics
M Borg, A Shires, M Collu
Renewable and Sustainable Energy Reviews 39, 1214-1225, 2014
1552014
Offshore floating vertical axis wind turbines, dynamics modelling state of the art. Part II: Mooring line and structural dynamics
M Borg, M Collu, A Kolios
Renewable & Sustainable Energy Reviews 39, 1226-1234, 2014
492014
Use of a wave energy converter as a motion suppression device for floating wind turbines
M Borg, M Collu, F Brennan
462013
A comparison between the dynamics of horizontal and vertical axis offshore floating wind turbines
M Borg, M Collu
Philosophical Transactions of the Royal Society A 373 (2035), 2015
432015
Frequency-domain characteristics of aerodynamic loads of offshore floating vertical axis wind turbines
M Borg, M Collu
Applied Energy 155, 629-636, 2015
382015
Offshore floating vertical axis wind turbines, dynamics modelling state of the art. Part III: Hydrodynamics and coupled modelling approaches
M Borg, M Collu
Renewable and Sustainable Energy Reviews 46, 296-310, 2015
372015
A comparison on the dynamics of a floating vertical axis wind turbine on three different floating support structures
M Borg, M Collu
EERA DeepWind'2014, 2014
362014
Outcomes of the DeepWind conceptual design
US Paulsen, M Borg, HA Madsen, TF Pedersen, J Hattel, E Ritchie, ...
Energy Procedia 80, 329-341, 2015
332015
FloVAWT: progress on the development of a coupled model of dynamics for floating offshore vertical axis wind turbines
M Collu, M Borg, A Shires, FP Brennan
ASME 2013 32nd International Conference on Ocean, Offshore and Arctic …, 2013
312013
Offshore floating vertical axis wind turbines: advantages, disadvantages, and dynamics modelling state of the art
M Borg, M Collu, FP Brennan
Marine Offshore Renewable Energy Conference, 33-46, 2012
302012
The Triple Spar campaign: Model tests of a 10MW floating wind turbine with waves, wind and pitch control
H Bredmose, F Lemmer, M Borg, A Pegalajar-Jurado, RF Mikkelsen, ...
Energy Procedia 137, 58-76, 2017
292017
OC5 Project Phase Ib: Validation of Hydrodynamic Loading on a Fixed, Flexible Cylinder for Offshore Wind Applications
AN Robertson, F Wendt, JM Jonkman, W Popko, M Borg, H Bredmose, ...
Energy Procedia 94, 82-101, 2016
292016
FloVAWT: Further progresses on the development of a coupled model of dynamics for floating offshore VAWTs
M Collu, M Borg, A Shires, FN Rizzo, E Lupi
ASME 2014 33rd International Conference on Ocean, Offshore and Arctic …, 2014
272014
The Triple Spar Campaign: Implementation and Test of a Blade Pitch Controller on a Scaled Floating Wind Turbine Model
W Yu, F Lemmer, H Bredmose, M Borg, A Pegalajar-Jurado, ...
Energy Procedia 137, 323-338, 2017
262017
Floating substructure flexibility of large-volume 10MW offshore wind turbine platforms in dynamic calculations
M Borg, AM Hansen, H Bredmose
Journal of Physics: Conference Series 753 (8), 082024, 2016
232016
An efficient frequency-domain model for quick load analysis of floating offshore wind turbines
AMP Jurado, M Borg, H Bredmose
Wind Energy Science 3 (2), 693-712, 2018
222018
Experimental and numerical study of a 10MW TLP wind turbine in waves and wind
A Pegalajar-Jurado, AM Hansen, R Laugesen, RF Mikkelsen, M Borg, ...
Journal of Physics: Conference Series 753 (9), 092007, 2016
192016
A Comparison of Two Coupled Model of Dynamics for Offshore Floating Vertical Axis Wind Turbines (VAWT)
M Borg, K Wang, M Collu, T Moan
Proceedings of the ASME 2014 33rd International Conference on Ocean …, 2014
172014
Passive damping systems for floating vertical axis wind turbines analysis
M Borg, E Utrera Ortigado, M Collu, F Brennan
EWEA 2013, 2013
132013
LIFES50+ D4. 2: Public definition of the two LIFES50+ 10 MW floater concepts
W Yu, K Müller, F Lemmer, D Schlipf, H Bredmose, M Borg, T Landbø, ...
University of Stuttgart, 2018
122018
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Artikler 1–20