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April 22, 2026Open Access

Profiling of aerosol, water vapor and temperature in the boundary layer during TEAMx pre campaign 2022 and Swabian MOSES 2023 with a Raman-lidar at a high temporal resolution

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Authors

HVHannes VogelmannJSJohannes SpeidelMPMatthias Perfahl

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Overview

Measurement campaigns reveal turbulence and energy fluxes in boundary layers using advanced lidar technology, suggesting effective atmospheric profiling methods.

Key Points

  • To evaluate the performance of a newly developed Raman lidar in measuring atmospheric conditions and resolving turbulent processes.
  • Conducted measurements during summer campaigns in Innsbruck and Villingen-Schwenningen.
  • Utilized a Raman lidar to profile aerosols, water vapor, and temperature at high temporal resolution.
  • Combined lidar measurements with a vertical wind profiler for enhanced data analysis.
  • The lidar effectively resolved turbulent processes under varying weather conditions.
  • Vertical energy fluxes were analyzed, demonstrating the instrument's capability for detailed atmospheric profiling.
  • Results indicated the potential for improved understanding of boundary layer dynamics.

Cite This Study

Vogelmann et al. (2026) studied this question.

synapsesocial.com/papers/69e865d76e0dea528ddea467https://doi.org/10.5445/ir/1000192370
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Profiling of aerosol, water vapor and temperature in the boundary layer during TEAMx pre campaign 2022 and Swabian MOSES 2023 with a Raman-lidar at a high temporal resolution2026
  2. 2Comparison of wind profiles in the operational ICON-D2 analysis with Doppler wind lidar observations in complex topography from the Swabian MOSES 2023 campaign2024
  3. 3Atmospheric boundary layer structure at a small Alpine valley head detected with a network of UAS and ground-based sensors2024
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  5. 5Validation of GNSS-based Integrated Water Vapor for the Swabian MOSES 2023 field campaign2024