OC5 project phase II: validation of global loads of the DeepCwind floating semisubmersible wind turbine AN Robertson, F Wendt, JM Jonkman, W Popko, H Dagher, S Gueydon, ... Energy Procedia 137, 38-57, 2017 | 325 | 2017 |
Effect of wind turbine surge motion on rotor thrust and induced velocity JB Vaal, MO Hansen, T Moan Wind Energy 17 (1), 105-121, 2014 | 129 | 2014 |
Comparing different dynamic stall models JG Holierhoek, JB De Vaal, AH Van Zuijlen, H Bijl Wind Energy 16 (1), 139-158, 2013 | 105 | 2013 |
OC5 project phase I: Validation of hydrodynamic loading on a fixed cylinder AN Robertson, FF Wendt, JM Jonkman, W Popko, F Vorpahl, ... ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-15-116, 2015 | 52 | 2015 |
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 | 46 | 2016 |
Impact of foundation modelling in offshore wind turbines: Comparison between simulations and field data AM Page, V Næss, JB De Vaal, GR Eiksund, TA Nygaard Marine Structures 64, 379-400, 2019 | 42 | 2019 |
Development, verification and validation of 3DFloat; aero-servo-hydro-elastic computations of offshore structures TA Nygaard, J De Vaal, F Pierella, L Oggiano, R Stenbro Energy Procedia 94, 425-433, 2016 | 41 | 2016 |
Validation of a vortex ring wake model suited for aeroelastic simulations of floating wind turbines JB De Vaal, MOL Hansen, T Moan Journal of Physics: Conference Series 555 (1), 012025, 2014 | 18 | 2014 |
Reproduction of steep long crested irregular waves with CFD using the VOF method L Oggiano, F Pierella, TA Nygaard, J De Vaal, E Arens Energy Procedia 137, 273-281, 2017 | 17 | 2017 |
Comparison of experiments and CFD simulations of a braceless concrete semi-submersible platform L Oggiano, F Pierella, TA Nygaard, J De Vaal, E Arens Energy Procedia 94, 278-289, 2016 | 9 | 2016 |
3DFloat user manual J De Vaal, TA Nygaard Institute for Energy Technology, Norway, 2015 | 9 | 2015 |
A family of practical foundation models for dynamic analyses of offshore wind turbines AM Page, A Løkke, KS Skau, JB De Vaal Offshore Technology Conference, D011S005R003, 2019 | 6 | 2019 |
Influence of rigid body motions on rotor induced velocities and aerodynamic loads of a floating horizontal axis wind turbine JB de Vaal, MOL Hansen, T Moan International Conference on Offshore Mechanics and Arctic Engineering 45547 …, 2014 | 6 | 2014 |
Stream function wave embedment into linear irregular seas: a new method based on the Hilbert transform F Pierella, R Stenbro, L Oggiano, J de Vaal, TA Nygaard, J Krokstad ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-17-454, 2017 | 5 | 2017 |
Dependence of wind turbine loads on inlet flow field ØW Hanssen-Bauer, JB De Vaal, M Tutkun, H Asmuth, S Ivanell, ... Journal of Physics: Conference Series 1618 (6), 062065, 2020 | 4 | 2020 |
The Dimensioning Sea Loads (DIMSELO) project F Pierella, H Bredmose, JB De Vaal, L Eliassen, J Krokstad, TA Nygaard, ... Journal of Physics: Conference Series 1104 (1), 012037, 2018 | 4 | 2018 |
Developing a passive load reduction blade for the DTU 10 MW reference turbine JB de Vaal, TA Nygaard, R Stenbro Journal of Physics: Conference Series 753 (4), 042004, 2016 | 4 | 2016 |
Simplified wake modelling for wind farm load prediction JB de Vaal, M Muskulus Journal of Physics: Conference Series 2018 (1), 012012, 2021 | 3 | 2021 |
Modeling of 2D Irregular Waves on a Sloped Bottom Using a Fully Nonlinear Navier-Stokes/VOF Formulation L Oggiano, F Pierella, J De Vaal, TA Nygaard, R Stenbro, E Arens ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-17-479, 2017 | 2 | 2017 |
Aerodynamic modelling of floating wind turbines JB De Vaal NTNU, 2015 | 2 | 2015 |