Articles | Volume 10, issue 6
https://doi.org/10.5194/wes-10-1055-2025
© Author(s) 2025. This work is distributed under the Creative Commons Attribution 4.0 License.
Special issue:
A dynamic open-source model to investigate wake dynamics in response to wind farm flow control strategies
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- Final revised paper (published on 11 Jun 2025)
- Preprint (discussion started on 25 Nov 2024)
Interactive discussion
Status: closed
Comment types: AC – author | RC – referee | CC – community | EC – editor | CEC – chief editor
| : Report abuse
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RC1: 'Comment on wes-2024-150', Anonymous Referee #1, 21 Jan 2025
- AC1: 'Reply on RC1', Marcus Becker, 25 Feb 2025
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RC2: 'Comment on wes-2024-150', Anonymous Referee #2, 26 Jan 2025
- AC2: 'Reply on RC2', Marcus Becker, 25 Feb 2025
Peer review completion
AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Marcus Becker on behalf of the Authors (25 Feb 2025)
Author's response
Author's tracked changes
Manuscript
ED: Referee Nomination & Report Request started (10 Mar 2025) by Nikolay Dimitrov
RR by Anonymous Referee #2 (11 Mar 2025)
RR by Anonymous Referee #1 (11 Mar 2025)
ED: Publish as is (11 Mar 2025) by Nikolay Dimitrov
ED: Publish as is (12 Mar 2025) by Paul Fleming (Chief editor)
AR by Marcus Becker on behalf of the Authors (14 Mar 2025)
A very good, conclusive work, giving a good overview and structure to low/mid-fidelity control-oriented dynamic wake models.
The paper might require significant background knowledge from the reader on the topic of wake models and control, but in return gives good analysis and insightful results.
A few suggestions to improve clarity and help the reader:
- Line 142: use some more words to describe "no tilting" (e.g. "no or small tilt angles on the wind turbine rotors", or "no rotor-tilt-based wake redirection").
- Avoid a vague use of language 'mirror a possible "out of the box" experience', in line 165
- Add a label "ghost OP" to the relevant element in Figure 2
- Section 2.3: First it is stated that wind direction is used to evaluate the LUT, then later TI, Wind Speed and Wind Direction. Could be explained more clearly.
- List clearly some relevant parameters of the controller, namely the update time of the controller, and the maximum yaw amplitude. I was not able to find them.
- Already mention the 20 minutes in Section 4.3, presumably considered the threshold for "large ΔT", which later comes back in the Conclusions (line 480)
Further, what is less convincing on the modeling, is that in the case study only wind direction is varied. It would be good at this point to refer specifically to other studies with variation of wind speed as well.