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Aerosol above-cloud direct radiative effect and properties in the Namibian region during the AErosol, RadiatiOn, and CLOuds in southern Africa airborne simulator and sun photometer measurements
by
Delegove, Cyril
, Nicolas, Jean-Marc
, Blarel, Luc
, Loisil, Rodrigue
, Chauvigné, Aurélien
, Mallet, Marc
, Dubovik, Oleg
, Gaetani, Marco
, Flamant, Cyrille
, Formenti, Paola
, Auriol, Frédérique
, Peers, Fanny
, Goloub, Philippe
, Torres, Benjamin
, Parol, Frédéric
, Waquet, Fabien
in
Analysis
/ Atmospheric circulation
/ Measurement
/ Radiation
/ Stratocumulus clouds
2021
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Aerosol above-cloud direct radiative effect and properties in the Namibian region during the AErosol, RadiatiOn, and CLOuds in southern Africa airborne simulator and sun photometer measurements
by
Delegove, Cyril
, Nicolas, Jean-Marc
, Blarel, Luc
, Loisil, Rodrigue
, Chauvigné, Aurélien
, Mallet, Marc
, Dubovik, Oleg
, Gaetani, Marco
, Flamant, Cyrille
, Formenti, Paola
, Auriol, Frédérique
, Peers, Fanny
, Goloub, Philippe
, Torres, Benjamin
, Parol, Frédéric
, Waquet, Fabien
in
Analysis
/ Atmospheric circulation
/ Measurement
/ Radiation
/ Stratocumulus clouds
2021
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Aerosol above-cloud direct radiative effect and properties in the Namibian region during the AErosol, RadiatiOn, and CLOuds in southern Africa airborne simulator and sun photometer measurements
by
Delegove, Cyril
, Nicolas, Jean-Marc
, Blarel, Luc
, Loisil, Rodrigue
, Chauvigné, Aurélien
, Mallet, Marc
, Dubovik, Oleg
, Gaetani, Marco
, Flamant, Cyrille
, Formenti, Paola
, Auriol, Frédérique
, Peers, Fanny
, Goloub, Philippe
, Torres, Benjamin
, Parol, Frédéric
, Waquet, Fabien
in
Analysis
/ Atmospheric circulation
/ Measurement
/ Radiation
/ Stratocumulus clouds
2021
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Aerosol above-cloud direct radiative effect and properties in the Namibian region during the AErosol, RadiatiOn, and CLOuds in southern Africa airborne simulator and sun photometer measurements
Journal Article
Aerosol above-cloud direct radiative effect and properties in the Namibian region during the AErosol, RadiatiOn, and CLOuds in southern Africa airborne simulator and sun photometer measurements
2021
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Overview
We analyse the airborne measurements of above-cloud aerosols from the AErosol, RadiatiOn, and CLOuds in southern Africa (AEROCLO-sA) field campaign performed in Namibia during August and September 2017. The study aims to retrieve the aerosol above-cloud direct radiative effect (DRE) with well-defined uncertainties. To improve the retrieval of the aerosol and cloud properties, the airborne demonstrator of the Multi-Viewing, Multi-Channel, Multi-Polarization (3MI) satellite instrument, called the Observing System Including PolaRisation in the Solar Infrared Spectrum (OSIRIS), was deployed on-board the SAFIRE (Service des Avions Français Instrumentés pour la Rechercheen Environnement) Falcon 20 aircraft during 10 flights performed over land, over the ocean, and along the Namibian coast. The airborne instrument OSIRIS provides observations at high temporal and spatial resolutions for aerosol above clouds (AACs) and cloud properties. OSIRIS was supplemented with the Photomètre Léger Aéroporté pour la surveillance des Masses d'Air version 2 (PLASMA2). The combined airborne measurements allow, for the first time, the validation of AAC algorithms previously developed for satellite measurements. The variations in the aerosol properties are consistent with the different atmospheric circulation regimes observed during the deployment. Airborne observations typically show strong aerosol optical depth (AOD; up to 1.2 at 550 nm) of fine-mode particles from biomass burning (extinction Ãngström exponent varying between 1.6 and 2.2), transported above bright stratocumulus decks (mean cloud top around 1 km above mean sea level), with cloud optical thickness (COT) up to 35 at 550 nm. The above-cloud visible AOD retrieved with OSIRIS agrees within 10 % of the PLASMA2 sun photometer measurements in the same environment.
Publisher
Copernicus GmbH
Subject
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