P
Pierre H. Flamant
Researcher at École Polytechnique
Publications - 133
Citations - 4530
Pierre H. Flamant is an academic researcher from École Polytechnique. The author has contributed to research in topics: Lidar & Cirrus. The author has an hindex of 33, co-authored 133 publications receiving 4123 citations. Previous affiliations of Pierre H. Flamant include Centre national de la recherche scientifique.
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Journal ArticleDOI
THE CALIPSO MISSION: A Global 3D View of Aerosols and Clouds
David M. Winker,Jacques Pelon,James A. Coakley,Steven A. Ackerman,Robert J. Charlson,Peter R. Colarco,Pierre H. Flamant,Qiang Fu,Raymond M. Hoff,Chieko Kittaka,T. L. Kubar,H. Le Treut,M. P. McCormick,Gérard Mégie,Lamont R. Poole,Kathleen A. Powell,Chip Trepte,Mark A. Vaughan,Bruce A. Wielicki +18 more
TL;DR: CALIPSO as mentioned in this paper is a two-wavelength, polarization-sensitive lidar, along with two passive sensors operating in the visible and thermal infrared spectral regions for long-term atmospheric measurements from Earth's orbit.
Journal ArticleDOI
Urban boundary-layer height determination from lidar measurements over the paris area.
TL;DR: This work presents methods suited for precise determination of the ABL structure's temporal evolution in a dynamic environment as complex as the Paris area and compares commonly used methods that permit ABL height retrievals from backscatter lidar signals under different meteorological conditions.
Journal ArticleDOI
The atmospheric dynamics mission for global wind field measurement
Ad Stoffelen,Jean Pailleux,Erland Källén,J. Michael Vaughan,Lars Isaksen,Pierre H. Flamant,Werner Wergen,Erik Andersson,Harald Schyberg,Alain Culoma,Roland Meynart,Martin Endemann,Paul Ingmann +12 more
TL;DR: The Atmospheric Dynamics Mission (ADM) as discussed by the authors demonstrated measurements of vertical wind profiles from space using a high-performance Doppler wind lidar based on direct-detection interferometric techniques.
Journal ArticleDOI
Lidar determination of the entrainment zone thickness at the top of the unstable marine atmospheric boundary layer
TL;DR: In this paper, the authors measured the entrainment zone at the top of the marine atmospheric boundary layer (MABL) during a cold-air outbreak episode over the Mediterranean.
Journal ArticleDOI
Two-micrometer heterodyne differential absorption lidar measurements of the atmospheric CO 2 mixing ratio in the boundary layer
TL;DR: A 2 microm heterodyne differential absorption lidar (HDIAL) has been operated at the Instïtut Pierre Simon Laplace, Laboratoire de Météorologie Dynamique (Paris) to monitor the CO(2) mixing ratio in absolute value at high accuracy in the atmospheric boundary layer.