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Maurizio Collu
Maurizio Collu
Bestätigte E-Mail-Adresse bei strath.ac.uk - Startseite
Titel
Zitiert von
Zitiert von
Jahr
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
2232014
Preliminary design of a floating support structure for a 5 MW offshore wind turbine
S Lefebvre, M Collu
Ocean engineering 40, 15-26, 2012
1462012
Optimal design and performance analysis of a hybrid system combing a floating wind platform and wave energy converters
J Hu, B Zhou, C Vogel, P Liu, R Willden, K Sun, J Zang, J Geng, P Jin, ...
Applied energy 269, 114998, 2020
1222020
Wind power prediction based on high-frequency SCADA data along with isolation forest and deep learning neural networks
Z Lin, X Liu, M Collu
International Journal of Electrical Power & Energy Systems 118, 105835, 2020
1202020
3D URANS analysis of a vertical axis wind turbine in skewed flows
A Orlandi, M Collu, S Zanforlin, A Shires
Journal of Wind Engineering and Industrial Aerodynamics 147, 77-84, 2015
1202015
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 and Sustainable Energy Reviews 39, 1226-1234, 2014
812014
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: Mathematical, Physical …, 2015
772015
Critical review of floating support structures for offshore wind farm deployment
M Leimeister, A Kolios, M Collu
Journal of physics: Conference series 1104 (1), 012007, 2018
752018
Offshore multi-purpose platforms for a Blue Growth: A technological, environmental and socio-economic review
KA Abhinav, M Collu, S Benjamins, H Cai, A Hughes, B Jiang, S Jude, ...
Science of the total environment 734, 138256, 2020
722020
Use of a wave energy converter as a motion suppression device for floating wind turbines
M Borg, M Collu, FP Brennan
Energy Procedia 35, 223-233, 2013
682013
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
652015
Frequency-domain characteristics of aerodynamic loads of offshore floating vertical axis wind turbines
M Borg, M Collu
Applied energy 155, 629-636, 2015
592015
Harbour porpoise distribution can vary at small spatiotemporal scales in energetic habitats
S Benjamins, N van Geel, G Hastie, J Elliott, B Wilson
Deep Sea Research Part II: Topical Studies in Oceanography 141, 191-202, 2017
522017
Conceptual design of a floating support structure for an offshore vertical axis wind turbine: the lessons learnt
M Collu, FP Brennan, MH Patel
Ships and Offshore Structures 9 (1), 3-21, 2014
522014
Experimental and numerical analysis of a hybrid WEC-breakwater system combining an oscillating water column and an oscillating buoy
Y Cheng, L Fu, S Dai, M Collu, L Cui, Z Yuan, A Incecik
Renewable and Sustainable Energy Reviews 169, 112909, 2022
512022
Design of floating offshore wind turbines
M Collu, M Borg
Offshore wind farms, 359-385, 2016
502016
A comparison on the dynamics of a floating vertical axis wind turbine on three different floating support structures
M Borg, M Collu
Energy Procedia 53, 268-279, 2014
492014
Experimental and numerical investigation of WEC-type floating breakwaters: A single-pontoon oscillating buoy and a dual-pontoon oscillating water column
Y Cheng, L Fu, S Dai, M Collu, C Ji, Z Yuan, A Incecik
Coastal Engineering 177, 104188, 2022
472022
Operation and maintenance for floating wind turbines: A review
J McMorland, M Collu, D McMillan, J Carroll
Renewable and Sustainable Energy Reviews 163, 112499, 2022
462022
A multi-criteria decision making method to compare support structures for offshore wind turbines
A Kolios, M Collu, A Chahardehi, FP Brennan, MH Patel
European wind energy conference, Warsaw, 2010
452010
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