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Amir R. Nejad
Amir R. Nejad
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Title
Cited by
Cited by
Year
On long-term fatigue damage and reliability analysis of gears under wind loads in offshore wind turbine drivetrains
AR Nejad, Z Gao, T Moan
International Journal of Fatigue 61, 116-128, 2014
1522014
Development of a 5 MW reference gearbox for offshore wind turbines
AR Nejad, Y Guo, Z Gao, T Moan
Wind Energy 19 (6), 1089-1106, 2016
772016
Fatigue Reliability-Based Inspection and Maintenance Planning of Gearbox Components in Wind Turbine Drivetrains
AR Nejad, Z Gao, T Moan
Energy Procedia 53, 248 – 257, 2014
682014
A prognostic method for fault detection in wind turbine drivetrains
AR Nejad, PF Odgaard, Z Gao, T Moan
Engineering Failure Analysis 42, 324-336, 2014
672014
Stochastic dynamic load effect and fatigue damage analysis of drivetrains in land-based and TLP, spar and semi-submersible floating wind turbines
A Rasekhi Nejad, EE Bachynski, MI Kvittem, C Luan, Z Gao, T Moan
Marine Structures 42, 137–153, 2015
662015
Effects of floating sun gear in a wind turbine's planetary gearbox with geometrical imperfections
AR Nejad, Y Xing, Y Guo, J Keller, Z Gao, T Moan
Wind Energy 18 (12), 2105-2120, 2015
562015
Online condition monitoring of floating wind turbines drivetrain by means of digital twin
FK Moghadam, AR Nejad
Mechanical Systems and Signal Processing 162, 108087, 2022
472022
Long-term analysis of gear loads in fixed offshore wind turbines considering ultimate operational loadings
AR Nejad, Z Gao, T Moan
Energy Procedia 35, 187-197, 2013
422013
Evaluation of PMSG‐based drivetrain technologies for 10‐MW floating offshore wind turbines: Pros and cons in a life cycle perspective
FK Moghadam, AR Nejad
Wind Energy 23 (7), 1542-1563, 2020
412020
On design, modelling, and analysis of a 10‐MW medium‐speed drivetrain for offshore wind turbines
S Wang, AR Nejad, T Moan
Wind Energy 23 (4), 1099-1117, 2020
412020
Wind turbine drivetrains: state-of-the-art technologies and future development trends
AR Nejad, J Keller, Y Guo, S Sheng, H Polinder, S Watson, J Dong, Z Qin, ...
Wind Energy Science 7 (1), 387-411, 2022
392022
Effect of axial acceleration on drivetrain responses in a spar-type floating wind turbine
AR Nejad, EE Bachynski, T Moan
Journal of Offshore Mechanics and Arctic Engineering 141 (3), 2019
362019
Digital twin modeling for predictive maintenance of gearboxes in floating offshore wind turbine drivetrains
FK Moghadam, GFS Rebouças, AR Nejad
Forschung im Ingenieurwesen 85 (2), 273-286, 2021
342021
On digital twin condition monitoring approach for drivetrains in marine applications
SS Johansen, AR Nejad
International Conference on Offshore Mechanics and Arctic Engineering 58899 …, 2019
332019
Statistical fault diagnosis of wind turbine drivetrain applied to a 5MW floating wind turbine
M Ghane, AR Nejad, M Blanke, Z Gao, T Moan
Journal of Physics: Conference Series 753 (5), 052017, 2016
332016
On risk of digital twin implementation in marine industry: Learning from aviation industry
M Ibrion, N Paltrinieri, AR Nejad
Journal of Physics: Conference Series 1357 (1), 012009, 2019
272019
Condition monitoring of spar‐type floating wind turbine drivetrain using statistical fault diagnosis
M Ghane, A Rasekhi Nejad, M Blanke, Z Gao, T Moan
Wind Energy 21 (7), 575-589, 2018
232018
Learning from failures in cruise ship industry: The blackout of Viking Sky in Hustadvika, Norway
M Ibrion, N Paltrinieri, AR Nejad
Engineering Failure Analysis 125, 105355, 2021
222021
Recommendations on model fidelity for wind turbine gearbox simulations
Y Guo, J Keller, W La Cava, J Austin, AR Nejad, C Halse, L Bastard, ...
National Renewable Energy Lab.(NREL), Golden, CO (United States), 2015
222015
Conceptual study of a gearbox fault detection method applied on a 5‐MW spar‐type floating wind turbine
AR Nejad, PF Odgaard, T Moan
Wind Energy 21 (11), 1064-1075, 2018
212018
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