Articles | Volume 11, issue 7
https://doi.org/10.5194/wes-11-2585-2026
https://doi.org/10.5194/wes-11-2585-2026
Research article
 | 
22 Jul 2026
Research article |  | 22 Jul 2026

Calibration and validation of an engineering model for vortex-induced vibration prediction in wind turbine towers

Dimitris Vlastos, Niki Tzimi, Georgia Trampa, Vasilis Riziotis, Dimitris Manolas, and Nikos Spyropoulos

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Interactive discussion

Status: closed

Comment types: AC – author | RC – referee | CC – community | EC – editor | CEC – chief editor | : Report abuse
  • RC1: 'Comment on wes-2025-231', Anonymous Referee #1, 10 Jan 2026
    • AC1: 'Reply on RC1', Dimitris Vlastos, 19 Jan 2026
  • RC2: 'Comment on wes-2025-231', Anonymous Referee #2, 25 Mar 2026
    • AC2: 'Reply on RC2', Dimitris Vlastos, 06 Apr 2026

Peer review completion

AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Dimitris Vlastos on behalf of the Authors (04 May 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Referee Nomination & Report Request started (13 May 2026) by Jens Nørkær Sørensen
RR by Anonymous Referee #1 (24 May 2026)
RR by Anonymous Referee #2 (04 Jun 2026)
ED: Publish subject to technical corrections (05 Jun 2026) by Jens Nørkær Sørensen
ED: Publish subject to technical corrections (10 Jun 2026) by Paul Fleming (Chief editor)
AR by Dimitris Vlastos on behalf of the Authors (18 Jun 2026)  Author's response   Manuscript 
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Short summary
Vibrations in wind turbines caused by wake vortices are well known but difficult to predict during design. This study examines a calibrated mathematical model replicating a cantilevered cylinder experiment under vibration-prone conditions. Results show the model’s ability to capture the body’s response while offering greater insight than current state-of-the-art prediction tools.
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