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CORDIS - Risultati della ricerca dell’UE
CORDIS

Qualification of innovative floating substructures for 10MW wind turbines and water depths greater than 50m.

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Models for advanced load effects and loads at component level. (si apre in una nuova finestra)
Public defintion of the two LIFES50+ 10MW floater concepts. (si apre in una nuova finestra)
Design Basis (si apre in una nuova finestra)

A definition of the full set of environmental conditions and design load cases that shall be considered within the project

Overall summary of the industrialization process (si apre in una nuova finestra)

Dissemination – overall summary of the industrialization process in one publication

Optimization framework and methodology for optimized floater design. (si apre in una nuova finestra)
Project Quality and risk management plan (si apre in una nuova finestra)
Required numerical model fidelity and critical design load cases in various design phases (si apre in una nuova finestra)

Required numerical model fidelity and critical design load cases in various design phases, including industrialization.

Risk management for deep water substructures (si apre in una nuova finestra)
AeroDyn validated model (si apre in una nuova finestra)

Report on validation and tuning of AeroDyn model to be implemented in the HIL system for ocean basin tests

Report of initial kick-off meeting (si apre in una nuova finestra)

Report of initial kickoff meeting

Review of FOWT guidelines and design practise (si apre in una nuova finestra)

Review report on current regulations in guidelines and standards and publicly available design practices

Oceanographic and meteorological conditions for the design (si apre in una nuova finestra)

Oceanographic and meteorological conditions for the design Report with the analysis and selection of the target locations and the oceanographic and meteorological conditions for the concepts design

Wind turbine models for the design (si apre in una nuova finestra)

10MW wind turbine FASTAeroDyn model to be used by concepts developers including a report with the model description

Handbook Management procedures (si apre in una nuova finestra)
Guidance on platform and mooring line selection, installation and marine operations (si apre in una nuova finestra)
Publication and presentation of the research performed in the WP (si apre in una nuova finestra)

Publication and presentation of the research

Model validation against experiments and map of model accuracy across load cases. (si apre in una nuova finestra)
State-of-the-art models for the two public 10MW floater concepts (si apre in una nuova finestra)

State-of-the-art models for the two public 10MW floater concepts.

Overview of the numerical models used in the consortium and their qualification (si apre in una nuova finestra)

Overview of numerical consortium models and their qualification

Validation of advanced models and methods for cascading into simpler models. (si apre in una nuova finestra)
Periodic reports to EC (si apre in una nuova finestra)
Framework for LCOE, uncertainty and risk considerations during design (si apre in una nuova finestra)
Dissemination guidelines and procedures (si apre in una nuova finestra)
Design practice for 10MW+ FOWT support structures (si apre in una nuova finestra)

A public design practice for FOWT developers and researchers summarizing and condensing all key information in a generalized way from previous deliverables in WP8, i.e. the lessons learned, findings, methodologies and knowledge generated related to design. It includes chapters on necessary pre-design requirements and specifications, experimental and numerical design practices, as well as LCOE, uncertainty, risk and industrialization considerations and also includes exemplarily applications of the developed design methodologies.

State-of-the-art FOWT design practise and guidelines (si apre in una nuova finestra)

State of the art report summarizing the current industrial design practice and design phases and current regulations in guidelines and standards including an analysis of their importance on design and LCOE

LCOE tool description, technical and environmental impact evaluation procedure (si apre in una nuova finestra)

Description report evaluation tools LCOE and other KPI which will be used in the project It also contains a survey of similar tools and procedures Report also contents the results from industry assessment

Presentation of the methodology and results of the WP at a relevant conference (si apre in una nuova finestra)
Guidance and recommended methods for HIL/SIL-based FOWT experimental testing (si apre in una nuova finestra)

Guidance and recommended methods for HIL/SIL-based FOWT testing.

Identification of critical environmental conditions and design load cases (si apre in una nuova finestra)

Description of the most critical environmental conditions and design load cases for different platform types.

IPR Guidelines (si apre in una nuova finestra)
Expected LCOE for floating wind turbines 10MW+ for 50m+ water depth (si apre in una nuova finestra)

Report showing extrapolated results for LCOE and evaluation values, which should be realistic for our concepts assuming real production and cost reduction of several years. This result determines the definitive expected cost of energy for such floater concepts.

Upscaling procedure (si apre in una nuova finestra)

Report collecting design experience during the upscaling process.

Recommendations for platform design under considerations of O&M, logistics, manufacturing and decommissioning (si apre in una nuova finestra)

Recommendations for platform design under considerations of O&M, logistics, manufacturing and decommissioning.

Wind turbine scaled model (si apre in una nuova finestra)

Aeroelastic scaled model of the 10MW reference wind turbine

HexaFloat robot (si apre in una nuova finestra)

6 DOF moving platform for wind turbine HIL testing in wind tunnel

Pubblicazioni

6-DoF Hydrodynamic Modelling for Wind Tunnel Hybrid/HIL Tests of FOWT: The Real-Time Challenge (si apre in una nuova finestra)

Autori: Ilmas Bayati, Alan Facchinetti, Alessandro Fontanella, Marco Belloli
Pubblicato in: Volume 10: Ocean Renewable Energy, 2018, Pagina/e V010T09A078, ISBN 978-0-7918-5131-9
Editore: ASME
DOI: 10.1115/OMAE2018-77804

Load Sensitivity Analysis for a Floating Wind Turbine on a Steel Semi-Submersible Substructure (si apre in una nuova finestra)

Autori: Kolja Müller, Ricardo Faerron Guzman, Po Wen Cheng, Josean Galván, Miren J. Sánchez, Raúl Rodríguez, Andreas Manjock
Pubblicato in: ASME 2018 1st International Offshore Wind Technical Conference, 2018, Pagina/e V001T01A042, ISBN 978-0-7918-5197-5
Editore: ASME
DOI: 10.1115/IOWTC2018-1062

The TripleSpar campaign: validation of a reduced-order simulation model for floating wind turbines (si apre in una nuova finestra)

Autori: Lemmer, Frank; Yu, Wei; Cheng, Po Wen; Pegalajar-Jurado, Antonio; Borg, Michael; Mikkelsen, Robert F.; Bredmose, Henrik
Pubblicato in: Numero 1, 2018
Editore: ASME
DOI: 10.18419/opus-10047

An efficient frequency-domain model for quick load analysis of floating offshore wind turbines (si apre in una nuova finestra)

Autori: Antonio Pegalajar-Jurado, Michael Borg, Henrik Bredmose
Pubblicato in: Wind Energy Science, Numero 3/2, 2018, Pagina/e 693-712, ISSN 2366-7451
Editore: Wind Energy Science
DOI: 10.5194/wes-3-693-2018

Fully Mechatronical Design of an HIL System for Floating Devices (si apre in una nuova finestra)

Autori: Hermes Giberti, Francesco La Mura, Gabriele Resmini, Marco Parmeggiani
Pubblicato in: Robotics, Numero 7/3, 2018, Pagina/e 39, ISSN 2218-6581
Editore: Robotics 2018
DOI: 10.3390/robotics7030039

Aerodynamic design methodology for wind tunnel tests of wind turbine rotors (si apre in una nuova finestra)

Autori: Ilmas Bayati, Marco Belloli, Luca Bernini, Alberto Zasso
Pubblicato in: Journal of Wind Engineering and Industrial Aerodynamics, Numero 167, 2017, Pagina/e 217-227, ISSN 0167-6105
Editore: Elsevier BV
DOI: 10.1016/j.jweia.2017.05.004

Application of a Monte Carlo procedure for probabilistic fatigue design of floating offshore wind turbines (si apre in una nuova finestra)

Autori: Kolja Müller, Po Wen Cheng
Pubblicato in: Wind Energy Science, Numero 3/1, 2018, Pagina/e 149-162, ISSN 2366-7451
Editore: WIND ENERGY SCIENCE
DOI: 10.5194/wes-3-149-2018

NAUTILUS-DTU10 MW Floating Offshore Wind Turbine at Gulf of Maine: Public numerical models of an actively ballasted semisubmersible (si apre in una nuova finestra)

Autori: J Galván, M J Sánchez-Lara, I Mendikoa, G Pérez-Morán, V Nava, R Rodríguez-Arias
Pubblicato in: Journal of Physics: Conference Series, Numero 1102, 2018, Pagina/e 012015, ISSN 1742-6588
Editore: Institute of Physics
DOI: 10.1088/1742-6596/1102/1/012015

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