Articles | Volume 19, issue 19
https://doi.org/10.5194/amt-19-6267-2026
https://doi.org/10.5194/amt-19-6267-2026
Research article
 | 
02 Oct 2026
Research article |  | 02 Oct 2026

The LOLland offshore Lidar EXperiment (LOLLEX): a novel observational approach for the study of wind farm flow and entrainment

Shokoufeh Malekmohammadi, Etienne Cheynet, Joachim Reuder, Claus Linnemann, Mikael Sjöholm, Jakob Mann, and Gregor Giebel

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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 egusphere-2025-3148', Anonymous Referee #2, 11 Dec 2025
    • AC1: 'Reply on RC1', Shokoufeh Malekmohammadi, 02 Apr 2026
  • RC2: 'Comment on egusphere-2025-3148', Anonymous Referee #1, 23 Dec 2025
    • AC2: 'Reply on RC2', Shokoufeh Malekmohammadi, 02 Apr 2026

Peer review completion

AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Shokoufeh Malekmohammadi on behalf of the Authors (02 Apr 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Referee Nomination & Report Request started (17 Apr 2026) by Laura Bianco
RR by Anonymous Referee #2 (07 May 2026)
RR by P. M. Klein (22 May 2026)
ED: Reconsider after major revisions (25 May 2026) by Laura Bianco
AR by Shokoufeh Malekmohammadi on behalf of the Authors (03 Aug 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Referee Nomination & Report Request started (10 Aug 2026) by Laura Bianco
RR by P. M. Klein (25 Aug 2026)
ED: Publish subject to minor revisions (review by editor) (25 Aug 2026) by Laura Bianco
AR by Shokoufeh Malekmohammadi on behalf of the Authors (30 Aug 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Publish as is (03 Sep 2026) by Laura Bianco
AR by Shokoufeh Malekmohammadi on behalf of the Authors (14 Sep 2026)  Manuscript 
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Short summary
This study presents a lidar measurement strategy developed during a one-year offshore campaign. A ship-based scanning lidar provided high-resolution vertical wind measurements used to study turbulent mixing and atmospheric waves, complemented by wind speed profiles from a co-located wind profiler. A scanning lidar on a fixed platform observed turbine wakes, supported by the ship-based profiler. The results demonstrate the value of the strategy and dataset for wind energy and atmospheric science.
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