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April 16, 2026Atmospheric and Oceanic Optics0 citations

Aircraft LRV-2 Lidar Measurements of Vertical Wind Speed and Turbulence Parameters

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ASA. M. SherstobitovVBV. A. BanakhISI. N. Smalikho

Key Points

  • The research aims to assess the effectiveness of LRV-2 lidar in measuring vertical wind speed and turbulence parameters from aircraft.
  • Used LRV-2 lidar for nadir sounding aboard an aircraft.
  • Analyzed data to retrieve altitude profiles of vertical wind speed and turbulence parameters.
  • Measured altitude up to 1250-1600 m.
  • Detected vertical wind shear indicated by Doppler peaks in lidar data.
  • Retrieved profiles of vertical wind speed dispersion and turbulence dissipation rates.
  • Demonstrated the potential for improving techniques concerning turbulence and wind shear.

Abstract

Wind Doppler lidars have proven themselves as an effective tool for evaluating wind turbulence in aircraft measurements. However, existing sounding technique from aboard an aircraft assume the presence of a complex scanning system. In this work, we test the efficiency of the second version of the lidar created at the Laboratory of Wave Propagation of Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences, a in evaluating turbulence parameters and wind convective flows during nadir sounding from aboard a flying aircraft. Based on the analysis of experimental data, we retrieved the altitude profiles of vertical wind speed (VW) dispersion and turbulent kinetic energy dissipation rate up to altitudes of 1250–1600 m. During the analysis of sounding data near clouds, we detected VW shear by one lidar signal spectrum with two Doppler peaks. The results of this work can be useful in creating new techniques for estimated turbulence and wind shear.

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Cite This Study

Sherstobitov et al. (2026) studied this question.

synapsesocial.com/papers/69e07c1e2f7e8953b7cbd877https://doi.org/10.1134/s1024856025700964
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