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Wind Energy Science The interactive open-access journal of the European Academy of Wind Energy
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WES | Articles | Volume 3, issue 2
Wind Energ. Sci., 3, 905-917, 2018
https://doi.org/10.5194/wes-3-905-2018
© Author(s) 2018. This work is distributed under
the Creative Commons Attribution 4.0 License.
Wind Energ. Sci., 3, 905-917, 2018
https://doi.org/10.5194/wes-3-905-2018
© Author(s) 2018. This work is distributed under
the Creative Commons Attribution 4.0 License.

Research articles 27 Nov 2018

Research articles | 27 Nov 2018

Near-wake analysis of actuator line method immersed in turbulent flow using large-eddy simulations

Jörn Nathan et al.
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AC: Author comment | RC: Referee comment | SC: Short comment | EC: Editor comment
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AR: Author's response | RR: Referee report | ED: Editor decision
AR by Anna Wenzel on behalf of the Authors (02 Oct 2018)  Author's response
ED: Reconsider after major revisions (04 Oct 2018) by Sandrine Aubrun
AR by Jörn Nathan on behalf of the Authors (09 Oct 2018)  Author's response    Manuscript
ED: Publish as is (10 Oct 2018) by Sandrine Aubrun
ED: Publish as is (18 Oct 2018) by Jakob Mann(Chief Editor)
AR by Jörn Nathan on behalf of the Authors (28 Oct 2018)  Author's response    Manuscript
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Short summary
The interaction between wind turbines through their wakes is an important aspect of the conception and operation of a wind farm. Wakes are characterized by an elevated turbulence level and a noticeable velocity deficit which causes a decrease in energy output and fatigue on downstream turbines. In order to gain a better understanding of this phenomenon, this work uses large-eddy simulations together with an actuator line model and different ambient turbulences.
The interaction between wind turbines through their wakes is an important aspect of the...
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