Articles | Volume 11, issue 9
https://doi.org/10.5194/wes-11-3587-2026
https://doi.org/10.5194/wes-11-3587-2026
Research article
 | 
18 Sep 2026
Research article |  | 18 Sep 2026

Turbulence characterization in near-coastal environment using triple short-range lidars and mast anemometry

Lennart Vogt, Julia Gottschall, and Jasna Bogunović Jakobsen

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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-2026-100', Anonymous Referee #1, 26 Jun 2026
    • AC1: 'Reply on RC1', Lennart Vogt, 20 Aug 2026
  • RC2: 'Comment on wes-2026-100', Anonymous Referee #2, 05 Jul 2026
    • AC2: 'Reply on RC2', Lennart Vogt, 20 Aug 2026
  • RC3: 'Comment on wes-2026-100', Anonymous Referee #3, 14 Jul 2026
    • AC3: 'Reply on RC3', Lennart Vogt, 20 Aug 2026

Peer review completion

AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Lennart Vogt on behalf of the Authors (20 Aug 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Referee Nomination & Report Request started (21 Aug 2026) by Alfredo Peña
RR by Anonymous Referee #1 (24 Aug 2026)
RR by Anonymous Referee #2 (01 Sep 2026)
ED: Publish as is (02 Sep 2026) by Alfredo Peña
ED: Publish as is (02 Sep 2026) by Jakob Mann (Chief editor)
AR by Lennart Vogt on behalf of the Authors (02 Sep 2026)  Author's response   Manuscript 
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Short summary
A combined dataset of sonic and cup anemometer measurements, together with synchronized short-range lidar observations, is used to derive turbulence characteristics, including integral length scales, auto-spectra, and spatial coherence. The instruments exhibit strong agreement and consistent trends across atmospheric stability. Deviations at high frequencies are attributed to spatial averaging effects. Empirical models fitted to the data closely reproduce the spectral estimates.
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