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May 17, 2026Quarterly Journal of the Royal Meteorological Society0 citations

Exploiting Aeolus winds in a regional numerical weather prediction model

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GMGert‐Jan MarseilleRARoohollah AzadMRMartin Ridal

Key Points

  • This study aims to assess the impact of Aeolus Doppler wind lidar data on the HARMONIE–AROME regional weather prediction model.
  • Utilized two limited-area domains in the Nordic region, including Arctic and Atlantic areas.
  • Evaluated the impact on large-scale dynamics and temperature in upper-atmospheric conditions.
  • Analyzed the effectiveness of the Rayleigh and Mie backscatter signals for wind measurement.
  • Demonstrated statistically significant impacts in the Atlantic domain compared to neutral results in the Arctic region.
  • Improved large-scale atmospheric dynamics was observed, enhancing temperature predictions.
  • Revealed limitations in the data assimilation system, including a lack of bias-correction for Aeolus winds.

Abstract

Abstract Aeolus was the first Doppler wind lidar (DWL) to measure wind profiles from space. Aeolus has proven to be beneficial for global models, used by meteorological centres around the world. Demonstrating added value for regional models has been less successful so far. Here, we continue with earlier impact assessments with the HARMONIE–AROME limited‐area numerical weather prediction (NWP) model over the Nordic region. In this study, two limited‐area domains are considered: one includes an Arctic region and the other a region covering part of the Atlantic and most of Western Europe. Statistically significant impact could be demonstrated best for the Atlantic domain and is overall neutral for winds determined from the Rayleigh backscattered signal to positive for winds determined from Mie backscatter. Results presented here demonstrate overall improved large‐scale dynamics in the upper part of the atmosphere and improved temperature, which is related to the large‐scale dynamics as well. Limitations of the existing data assimilation system were revealed, including the lack of an Aeolus bias‐correction scheme and an imperfect implementation of the first‐guess check, as part of observation quality control. The latter limits a correct assessment of the observation‐error inflation technique. Recommendations for further improved usage of Aeolus winds in regional NWP are given to prepare NWP centres for a potential operational Aeolus follow‐on mission.

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Cite This Study

Marseille et al. (2026) studied this question.

synapsesocial.com/papers/6a095af37880e6d24efe0b38https://doi.org/10.1002/qj.70198
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