Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III

The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5) project, is validation of aero-hydro-servo-elastic simulation tools for offshore wind turbines (OWTs) through comparison of simulated results to the response data of physical systems. Phase III of t...

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Published in:Volume 10: Ocean Renewable Energy
Main Authors: Popko, Wojciech, Huhn, Matthias L., Robertson, Amy, Jonkman, Jason, Wendt, Fabian, Muller, Kolja, Kretschmer, Matthias, Vorpahl, Fabian, Hagen, Torbjørn Ruud, Galinos, Christos, Dreff, Jean-Baptiste Le, Gilbert, Philippe, Auriac, Bertrand, Villora, Francisco Navarro, Schunemann, Paul, Bayati, Ilmas, Belloli, Marco, Oh, Sho, Totsuka, Yoshitaka, Qvist, Jacob, Bachynski, Erin, Sørum, Stian Høegh, Thomassen, Paul E., Shin, Hyunkyoung, Vittori, Felipe, Galvan, Josean, Molins, Climent, Bonnet, Paul, Van Der Zee, Tjeerd, Bergua, Roger, Wang, Kai, Fu, Pengcheng, Cai, Jifeng
Other Authors: Kretschmer, Matthia, Galinos, Christo, Bayati, Ilma
Format: Conference Object
Language:English
Published: American Society of Mechanical Engineers (ASME) 2018
Subjects:
Online Access:http://hdl.handle.net/11311/1082426
https://doi.org/10.1115/OMAE2018-77589
http://www.asmedl.org/journals/doc/ASMEDL-home/proc/
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author Popko, Wojciech
Huhn, Matthias L.
Robertson, Amy
Jonkman, Jason
Wendt, Fabian
Muller, Kolja
Kretschmer, Matthias
Vorpahl, Fabian
Hagen, Torbjørn Ruud
Galinos, Christos
Dreff, Jean-Baptiste Le
Gilbert, Philippe
Auriac, Bertrand
Villora, Francisco Navarro
Schunemann, Paul
Bayati, Ilmas
Belloli, Marco
Oh, Sho
Totsuka, Yoshitaka
Qvist, Jacob
Bachynski, Erin
Sørum, Stian Høegh
Thomassen, Paul E.
Shin, Hyunkyoung
Vittori, Felipe
Galvan, Josean
Molins, Climent
Bonnet, Paul
Van Der Zee, Tjeerd
Bergua, Roger
Wang, Kai
Fu, Pengcheng
Cai, Jifeng
author2 Popko, Wojciech
Huhn, Matthias L.
Robertson, Amy
Jonkman, Jason
Wendt, Fabian
Muller, Kolja
Kretschmer, Matthia
Vorpahl, Fabian
Hagen, Torbjørn Ruud
Galinos, Christo
Dreff, Jean-Baptiste Le
Gilbert, Philippe
Auriac, Bertrand
Villora, Francisco Navarro
Schunemann, Paul
Bayati, Ilma
Belloli, Marco
Oh, Sho
Totsuka, Yoshitaka
Qvist, Jacob
Bachynski, Erin
Sørum, Stian Høegh
Thomassen, Paul E.
Shin, Hyunkyoung
Vittori, Felipe
Galvan, Josean
Molins, Climent
Bonnet, Paul
Van Der Zee, Tjeerd
Bergua, Roger
Wang, Kai
Fu, Pengcheng
Cai, Jifeng
author_facet Popko, Wojciech
Huhn, Matthias L.
Robertson, Amy
Jonkman, Jason
Wendt, Fabian
Muller, Kolja
Kretschmer, Matthias
Vorpahl, Fabian
Hagen, Torbjørn Ruud
Galinos, Christos
Dreff, Jean-Baptiste Le
Gilbert, Philippe
Auriac, Bertrand
Villora, Francisco Navarro
Schunemann, Paul
Bayati, Ilmas
Belloli, Marco
Oh, Sho
Totsuka, Yoshitaka
Qvist, Jacob
Bachynski, Erin
Sørum, Stian Høegh
Thomassen, Paul E.
Shin, Hyunkyoung
Vittori, Felipe
Galvan, Josean
Molins, Climent
Bonnet, Paul
Van Der Zee, Tjeerd
Bergua, Roger
Wang, Kai
Fu, Pengcheng
Cai, Jifeng
author_sort Popko, Wojciech
collection Unknown
container_title Volume 10: Ocean Renewable Energy
description The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5) project, is validation of aero-hydro-servo-elastic simulation tools for offshore wind turbines (OWTs) through comparison of simulated results to the response data of physical systems. Phase III of the OC5 project analyzes the Senvion 5M wind turbine supported by the OWEC Quattropod from the alpha ventus offshore wind farm. This paper shows results of the verification of the OWT models (code-to-code comparison). A subsequent publication will focus on their validation (comparison of simulated results to measured physical system response data). Based on the available data, the participants of Phase III set up numerical models of the OWT in their simulation tools. It was necessary to verify and to tune these models. The verification and tuning were performed against an OWT model available at the University of Stuttgart - Stuttgart Wind Energy (SWE) and documentation provided by Senvion and OWEC Tower. A very good match was achieved between the results from the reference SWE model and models set up by OC5 Phase III participants.
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genre_facet Arctic
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op_doi https://doi.org/10.1115/OMAE2018-77589
op_relation info:eu-repo/semantics/altIdentifier/isbn/9780791851319
info:eu-repo/semantics/altIdentifier/wos/WOS:000449724700055
ispartofbook:Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering - OMAE
ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2018
volume:10
firstpage:1
lastpage:9
numberofpages:9
http://hdl.handle.net/11311/1082426
publishDate 2018
publisher American Society of Mechanical Engineers (ASME)
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spelling ftpolimilanoiris:oai:re.public.polimi.it:11311/1082426 2025-06-15T14:16:22+00:00 Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III Popko, Wojciech Huhn, Matthias L. Robertson, Amy Jonkman, Jason Wendt, Fabian Muller, Kolja Kretschmer, Matthias Vorpahl, Fabian Hagen, Torbjørn Ruud Galinos, Christos Dreff, Jean-Baptiste Le Gilbert, Philippe Auriac, Bertrand Villora, Francisco Navarro Schunemann, Paul Bayati, Ilmas Belloli, Marco Oh, Sho Totsuka, Yoshitaka Qvist, Jacob Bachynski, Erin Sørum, Stian Høegh Thomassen, Paul E. Shin, Hyunkyoung Vittori, Felipe Galvan, Josean Molins, Climent Bonnet, Paul Van Der Zee, Tjeerd Bergua, Roger Wang, Kai Fu, Pengcheng Cai, Jifeng Popko, Wojciech Huhn, Matthias L. Robertson, Amy Jonkman, Jason Wendt, Fabian Muller, Kolja Kretschmer, Matthia Vorpahl, Fabian Hagen, Torbjørn Ruud Galinos, Christo Dreff, Jean-Baptiste Le Gilbert, Philippe Auriac, Bertrand Villora, Francisco Navarro Schunemann, Paul Bayati, Ilma Belloli, Marco Oh, Sho Totsuka, Yoshitaka Qvist, Jacob Bachynski, Erin Sørum, Stian Høegh Thomassen, Paul E. Shin, Hyunkyoung Vittori, Felipe Galvan, Josean Molins, Climent Bonnet, Paul Van Der Zee, Tjeerd Bergua, Roger Wang, Kai Fu, Pengcheng Cai, Jifeng 2018 http://hdl.handle.net/11311/1082426 https://doi.org/10.1115/OMAE2018-77589 http://www.asmedl.org/journals/doc/ASMEDL-home/proc/ eng eng American Society of Mechanical Engineers (ASME) info:eu-repo/semantics/altIdentifier/isbn/9780791851319 info:eu-repo/semantics/altIdentifier/wos/WOS:000449724700055 ispartofbook:Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering - OMAE ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2018 volume:10 firstpage:1 lastpage:9 numberofpages:9 http://hdl.handle.net/11311/1082426 Ocean Engineering Energy Engineering and Power Technology Mechanical Engineering info:eu-repo/semantics/conferenceObject 2018 ftpolimilanoiris https://doi.org/10.1115/OMAE2018-77589 2025-05-28T05:07:50Z The main objective of the Offshore Code Comparison Collaboration Continuation, with Correlation (OC5) project, is validation of aero-hydro-servo-elastic simulation tools for offshore wind turbines (OWTs) through comparison of simulated results to the response data of physical systems. Phase III of the OC5 project analyzes the Senvion 5M wind turbine supported by the OWEC Quattropod from the alpha ventus offshore wind farm. This paper shows results of the verification of the OWT models (code-to-code comparison). A subsequent publication will focus on their validation (comparison of simulated results to measured physical system response data). Based on the available data, the participants of Phase III set up numerical models of the OWT in their simulation tools. It was necessary to verify and to tune these models. The verification and tuning were performed against an OWT model available at the University of Stuttgart - Stuttgart Wind Energy (SWE) and documentation provided by Senvion and OWEC Tower. A very good match was achieved between the results from the reference SWE model and models set up by OC5 Phase III participants. Conference Object Arctic Unknown Volume 10: Ocean Renewable Energy
spellingShingle Ocean Engineering
Energy Engineering and Power Technology
Mechanical Engineering
Popko, Wojciech
Huhn, Matthias L.
Robertson, Amy
Jonkman, Jason
Wendt, Fabian
Muller, Kolja
Kretschmer, Matthias
Vorpahl, Fabian
Hagen, Torbjørn Ruud
Galinos, Christos
Dreff, Jean-Baptiste Le
Gilbert, Philippe
Auriac, Bertrand
Villora, Francisco Navarro
Schunemann, Paul
Bayati, Ilmas
Belloli, Marco
Oh, Sho
Totsuka, Yoshitaka
Qvist, Jacob
Bachynski, Erin
Sørum, Stian Høegh
Thomassen, Paul E.
Shin, Hyunkyoung
Vittori, Felipe
Galvan, Josean
Molins, Climent
Bonnet, Paul
Van Der Zee, Tjeerd
Bergua, Roger
Wang, Kai
Fu, Pengcheng
Cai, Jifeng
Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title_full Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title_fullStr Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title_full_unstemmed Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title_short Verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within OC5 phase III
title_sort verification of a numerical model of the offshore wind turbine from the alpha ventus wind farm within oc5 phase iii
topic Ocean Engineering
Energy Engineering and Power Technology
Mechanical Engineering
topic_facet Ocean Engineering
Energy Engineering and Power Technology
Mechanical Engineering
url http://hdl.handle.net/11311/1082426
https://doi.org/10.1115/OMAE2018-77589
http://www.asmedl.org/journals/doc/ASMEDL-home/proc/