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April 16, 20260 citations

Wind Measurements up to 25km based on Aerosol Backscatter with a Novel, Multi Field of View Lidar

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TMThorben H. MenseJHJosef HöffnerJFJan Froh

Key Points

  • To obtain simultaneous horizontal and vertical wind measurements using a novel lidar system from 3 to 25 km altitude.
  • Utilized the VAHCOLI lidar system for simultaneous wind measurements.
  • Employed Doppler-Mie, Doppler-Rayleigh, and Doppler-resonance techniques.
  • Conducted measurements across five fields of view to enhance data accuracy.
  • Compared wind data with ECMWF and Aeolus satellite measurements.
  • Horizontal wind components showed good agreement with ECMWF and Aeolus satellite data.
  • Vertical wind measurements indicated significant underestimation by ECMWF.
  • The system successfully detected small-scale wind asymmetries.

Abstract

We present the first set of simultaneous horizontal and vertical wind measurements obtained from aerosol backscatter, covering altitudes between 3 and 25 km. These measurements were made possible by using the novel VAHCOLI lidar system of the Leibniz Institute of Atmospheric Physics in Germany. Designed as a multi-purpose system incorporating Doppler-Mie, Doppler-Rayleigh, and Doppler-resonance lidar techniques for studying the middle atmosphere, the system has been upgraded to probe wind dynamics across five fields of view. Comparisons with winds from ECMWF (European Centre for Medium-Range Weather Forecasts) and Aeolus satellite data show good agreement for horizontal wind components but reveal a significant underestimation of vertical winds by ECMWF. By leveraging measurements across multiple fields of view, we highlight the system's capability to detect small-scale wind asymmetries, underscoring its value for atmospheric research.

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Cite This Study

Mense et al. (2026) studied this question.

synapsesocial.com/papers/69e07c972f7e8953b7cbdcb5https://doi.org/10.1051/epjconf/202636204006/pdf
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