nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A comparison of two fully coupled codes for integrated dynamic analysis of floating vertical axis wind turbines
|
Koppenol, Boy |
|
2017 |
137 |
C |
p. 282-290 |
artikel |
2 |
A 3D FEM model for floating wind turbines support structures
|
Campos, A |
|
2017 |
137 |
C |
p. 177-185 |
artikel |
3 |
A full-scale 3D Vs 2.5D Vs 2D analysis of flow pattern and forces for an industrial-scale 5MW NREL reference wind-turbine.
|
Tabib, Mandar |
|
2017 |
137 |
C |
p. 477-486 |
artikel |
4 |
A metaheuristic solution method for optimizing vessel fleet size and mix for maintenance operations at offshore wind farms under uncertainty
|
Halvorsen-Weare, Elin Espeland |
|
2017 |
137 |
C |
p. 531-538 |
artikel |
5 |
Analysis of experimental data: The average shape of extreme wave forces on monopile foundations and the NewForce model
|
Schløer, Signe |
|
2017 |
137 |
C |
p. 223-237 |
artikel |
6 |
An engineering model for dynamic wind power plant flow
|
Merz, Karl O. |
|
2017 |
137 |
C |
p. 539-552 |
artikel |
7 |
A New Foundation Model for Integrated Analyses of Monopile-based Offshore Wind Turbines
|
Page, Ana M. |
|
2017 |
137 |
C |
p. 100-107 |
artikel |
8 |
A review of slamming load application to offshore wind turbines from an integrated perspective
|
Tu, Ying |
|
2017 |
137 |
C |
p. 346-357 |
artikel |
9 |
Assessing the impact of sampling and clustering techniques on offshore grid expansion planning
|
Härtel, Philipp |
|
2017 |
137 |
C |
p. 152-161 |
artikel |
10 |
A step towards reduced order modelling of flow characterized by wakes using Proper Orthogonal Decomposition
|
Fonn, Eivind |
|
2017 |
137 |
C |
p. 452-459 |
artikel |
11 |
Can a Wind Turbine Learn to Operate Itself? Evaluation of the potential of a heuristic, data-driven self-optimizing control system for a 5MW offshore wind turbine
|
Iordanov, Stefan Gueorguiev |
|
2017 |
137 |
C |
p. 26-37 |
artikel |
12 |
Comparison of numerical response predictions for a bottom-fixed offshore wind turbine
|
Sørum, Stian Høegh |
|
2017 |
137 |
C |
p. 89-99 |
artikel |
13 |
Control of HVDC systems based on diode rectifier for offshore wind farm applications
|
Flåten, Ida |
|
2017 |
137 |
C |
p. 406-413 |
artikel |
14 |
Damage Assessment of Floating Offshore Wind Turbines Using Response Surface Modeling
|
Müller, Kolja |
|
2017 |
137 |
C |
p. 119-133 |
artikel |
15 |
Demonstrating the impact of bidirectional coupling on the performance of an ocean-met model
|
Rasheed, Adil |
|
2017 |
137 |
C |
p. 443-451 |
artikel |
16 |
Design and fatigue analysis of monopile foundations to support the DTU 10 MW offshore wind turbine
|
Velarde, Joey |
|
2017 |
137 |
C |
p. 3-13 |
artikel |
17 |
Design Basis for the Feasibility Evaluation of Four Different Floater Designs
|
Ramachandran, GKV |
|
2017 |
137 |
C |
p. 186-195 |
artikel |
18 |
Development of a scale model of a Modular Multilevel Converters
|
Ljøkelsøy, Kjell |
|
2017 |
137 |
C |
p. 505-513 |
artikel |
19 |
Diagnostic monitoring of drivetrain in a 5 MW spar-type floating wind turbine using Hilbert spectral analysis
|
Ghane, Mahdi |
|
2017 |
137 |
C |
p. 204-213 |
artikel |
20 |
2D VAR single Doppler lidar vector retrieval and its application in offshore wind energy
|
Cherukuru, Nihanth W. |
|
2017 |
137 |
C |
p. 497-504 |
artikel |
21 |
Editorial
|
Giæver Tande, John Olav |
|
2017 |
137 |
C |
p. 1-2 |
artikel |
22 |
Experiences from Wind Turbine Pilot Test of a Remote Inspection System
|
Netland, Øyvind |
|
2017 |
137 |
C |
p. 382-390 |
artikel |
23 |
Experimental study on power curtailment of three in-line turbines
|
Bartl, Jan |
|
2017 |
137 |
C |
p. 307-314 |
artikel |
24 |
Experimental validation of a time-domain approach for determining sectional loads in a floating wind turbine hull subjected to moderate waves
|
Luan, Chenyu |
|
2017 |
137 |
C |
p. 366-381 |
artikel |
25 |
Fabrication and installation constraints for floating wind and implications on current infrastructure and design
|
Matha, Denis |
|
2017 |
137 |
C |
p. 299-306 |
artikel |
26 |
Fatigue behaviour of grouted connections at different ambient conditions and loading scenarios
|
Schaumann, Peter |
|
2017 |
137 |
C |
p. 196-203 |
artikel |
27 |
Fatigue Crack Detection for Lifetime Extension of Monopile-based Offshore Wind Turbines
|
Stutzmann, Jutta |
|
2017 |
137 |
C |
p. 143-151 |
artikel |
28 |
Fully integrated load analysis included in the structural reliability assessment of a monopile supported offshore wind turbine
|
Peeringa, Johan |
|
2017 |
137 |
C |
p. 255-260 |
artikel |
29 |
Generator response following as a primary frequency response control strategy for VSC-HVDC connected offshore wind farms
|
McGill, R. |
|
2017 |
137 |
C |
p. 108-118 |
artikel |
30 |
Grid Integration of offshore wind farms using a Hybrid HVDC composed by an MMC with an LCC-based transmission system
|
Torres-Olguin, Raymundo E. |
|
2017 |
137 |
C |
p. 391-400 |
artikel |
31 |
Industrial scale turbine and associated wake development -comparison of RANS based Actuator Line Vs Sliding Mesh Interface Vs Multiple Reference Frame method.
|
Tabib, Mandar |
|
2017 |
137 |
C |
p. 487-496 |
artikel |
32 |
Influence of turbulence intensity on wind turbine power curves
|
Bardal, Lars Morten |
|
2017 |
137 |
C |
p. 553-558 |
artikel |
33 |
Key Performance Indicators for Wind Farm Operation and Maintenance
|
Gonzalez, Elena |
|
2017 |
137 |
C |
p. 559-570 |
artikel |
34 |
Lidars for Wind Tunnels - an IRPWind Joint Experiment Project
|
Sjöholm, Mikael |
|
2017 |
137 |
C |
p. 339-345 |
artikel |
35 |
Lifetime extension for large offshore wind farms: Is it enough to reassess fatigue for selected design positions?
|
Bouty, Corantin |
|
2017 |
137 |
C |
p. 523-530 |
artikel |
36 |
Mesh Parametric Study for Fatigue Assessment of Tubular K-joints using Numerical Methods
|
Espinosa, Jorge Mendoza |
|
2017 |
137 |
C |
p. 514-522 |
artikel |
37 |
Multistage grid investments incorporating uncertainty in offshore wind development
|
Kristiansen, Martin |
|
2017 |
137 |
C |
p. 468-476 |
artikel |
38 |
Nacelle-based Lidar Measurements for the Calibration of a Wake Model at Different Offshore Operating Conditions
|
Trabucchi, Davide |
|
2017 |
137 |
C |
p. 77-88 |
artikel |
39 |
Numerical study of irregular breaking wave forces on a monopile for offshore wind turbines
|
Aggarwal, Ankit |
|
2017 |
137 |
C |
p. 246-254 |
artikel |
40 |
OC5 Project Phase II: Validation of Global Loads of the DeepCwind Floating Semisubmersible Wind Turbine
|
Robertson, Amy N. |
|
2017 |
137 |
C |
p. 38-57 |
artikel |
41 |
Offshore Turbine Wake Power Losses: Is Turbine Separation Significant?
|
Argyle, P. |
|
2017 |
137 |
C |
p. 134-142 |
artikel |
42 |
Offshore Wind Turbine Wake characteristics using Scanning Doppler Lidar
|
Krishnamurthy, R. |
|
2017 |
137 |
C |
p. 428-442 |
artikel |
43 |
Optimisation of Data Acquisition in Wind Turbines with Data-Driven Conversion Functions for Sensor Measurements
|
Colone, L. |
|
2017 |
137 |
C |
p. 571-578 |
artikel |
44 |
Optimizing Jack-up vessel strategies for maintaining offshore wind farms
|
Stålhane, Magnus |
|
2017 |
137 |
C |
p. 291-298 |
artikel |
45 |
Prediction of the shape of inline wave force and free surface elevation using First Order Reliability Method (FORM)
|
Ghadirian, Amin |
|
2017 |
137 |
C |
p. 162-176 |
artikel |
46 |
Quasi-Static & Dynamic Numerical Modeling of Full Scale NREL 5MW Wind Turbine
|
Siddiqui, M. Salman |
|
2017 |
137 |
C |
p. 460-467 |
artikel |
47 |
Recommended practices for wind farm data collection and reliability assessment for O&M optimization
|
Hahn, Berthold |
|
2017 |
137 |
C |
p. 358-365 |
artikel |
48 |
Reproduction of steep long crested irregular waves with CFD using the VOF method
|
Oggiano, Luca |
|
2017 |
137 |
C |
p. 273-281 |
artikel |
49 |
Risk-based planning of operation and maintenance for offshore wind farms
|
Florian, Mihai |
|
2017 |
137 |
C |
p. 261-272 |
artikel |
50 |
Sensitivity Analysis of Limited Actuation for Real-time Hybrid Model Testing of 5MW Bottom-fixed Offshore Wind Turbine
|
Karimirad, Madjid |
|
2017 |
137 |
C |
p. 14-25 |
artikel |
51 |
Spectral characteristics of surface-layer turbulence in the North Sea
|
Cheynet, Etienne |
|
2017 |
137 |
C |
p. 414-427 |
artikel |
52 |
The C-Tower project – A composite tower for offshore wind turbines
|
Zee, Tjeerd van der |
|
2017 |
137 |
C |
p. 401-405 |
artikel |
53 |
The effect of rotational direction on the wake of a wind turbine rotor – a comparison study of aligned co- and counter rotating turbine arrays
|
Mühle, Franz |
|
2017 |
137 |
C |
p. 238-245 |
artikel |
54 |
The Triple Spar Campaign: Implementation and Test of a Blade Pitch Controller on a Scaled Floating Wind Turbine Model
|
Yu, W. |
|
2017 |
137 |
C |
p. 323-338 |
artikel |
55 |
The Triple Spar campaign: Model tests of a 10MW floating wind turbine with waves, wind and pitch control
|
Bredmose, H. |
|
2017 |
137 |
C |
p. 58-76 |
artikel |
56 |
Training requirements of a neural network used for fatigue load estimation of offshore wind turbines
|
Seifert, J. |
|
2017 |
137 |
C |
p. 315-322 |
artikel |
57 |
Wind Tunnel Wake Measurements of Floating Offshore Wind Turbines
|
Bayati, I. |
|
2017 |
137 |
C |
p. 214-222 |
artikel |