arrow
Return

Demonstrating Aeolus capability to observe wind-cloud interactions

delete2026-01-08
delete0
PRE
AI
Z
Zacharie Titus *
M
Marine Bonazzola
H
Hélène Chepfer
A
Artem Feofilov
M
Marie-Laure Roussel
B
Benjamin Witschas
S
Sophie Bastin
DOI:10.5194/acp-26-443-2026delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Model based studies have shown interactions between wind vertical profiles and cloudiness, but few observational studies corroborate them. The unique observations of Aeolus spaceborne Doppler wind lidar can contribute to fill this gap. In this paper, we merged global Aeolus observations of cloud profiles at full horizontal resolution (3 km along orbit track) with co-located profiles of horizontal winds.We first observed wind-cloud interactions at regional scale over the Indian Ocean. Aeolus captures the strengthening of the Tropical Easterly Jet in early June 2020, with wind speeds exceeding 40 ms-1 in its core, and a simultaneous increase of high cloud fraction up to above 30 %, until the decay of the jet during fall.Secondly, we observed wind-cloud interactions at cloud scale (between 3-100 km) in different regions. Over the Indian Ocean as well as over cumulus and stratocumulus dominated regions, we found that the wind shear inside clouds is smaller than the wind shear in the clear sky surrounding the clouds (statistically significant). In addition, we found that the wind speed difference between the cloud and its surrounding clear sky increases with the clear sky wind shear, especially in cumulus (R=-0.94) and stratocumulus (R=-0.87) dominated regions. This study demonstrated that despite its coarse resolution, Aeolus can capture wind perturbations induced by convective motion.
Keywords:
LIDAR MEASUREMENTS
VALIDATION
SHEAR
CONVECTION
PROFILES
PRODUCTS
CUMULUS
AEROSOL
OCEAN
MISSION
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Atmospheric Chemistry and Physics cover
Atmospheric Chemistry and Physics
IF:
5.1
Papers:
1.4W
Citations:
6.5W

Organization

I
Institut Polytechnique de Paris
Scholars:
246
Papers: 151
Citations: 0
E
Ecole Polytechnique
Scholars:
6.6K
Papers: 4.8K
Citations: 211
S
Sorbonne Universite
Scholars:
6.2W
Papers: 4.5W
Citations: 605
researcher View more organizations