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GEWEX cloud assessment: A review

  • Claudia Stubenrauch
  • , William B. Rossow
  • , Stefan Kinne
  • , Steve Ackerman
  • , Gregory Cesana
  • , Hélène Chepfer
  • , Larry Di Girolamo
  • , Brian Getzewich
  • , Anthony Guignard
  • , Andy Heidinger
  • , Brent Maddux
  • , Paul Menzel
  • , Patrick Minnis
  • , Cindy Pearl
  • , Steven Platnick
  • , Caroline Poulsen
  • , Jérôme Riedi
  • , Andrew Sayer
  • , Sunny Sun-Mack
  • , Andi Walther
  • Dave Winker, Shen Zeng, Guangyu Zhao
  • The City College of New York
  • Max Planck Institute for Meteorology
  • Cooperative Institute for Meteorological Satellite Studies
  • University of Illinois at Urbana-Champaign
  • SSAI
  • NOAA/NESDIS/STAR
  • NASA Langley Research Center
  • NASA Goddard Space Flight Center
  • CCLRC Rutherford Appleton Laboratory
  • Laboratoire d'Optique Atmosphérique
  • Universities Space Research Association

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

Clouds cover about 70% of the Earth's surface and play a dominant role in the energy and water cycle of our planet. Only satellite observations provide a continuous survey of the state of the atmosphere over the entire globe and across the wide range of spatial and temporal scales that comprise weather and climate variability. Satellite cloud data records now exceed more than 25 years; however, climatologies compiled from different satellite datasets can exhibit systematic biases. Questions therefore arise as to the accuracy and limitations of the various sensors. The Global Energy and Water cycle Experiment (GEWEX) Cloud Assessment, initiated in 2005 by the GEWEX Radiation Panel, provides the first coordinated intercomparison of publicly available, global cloud products (gridded, monthly statistics) retrieved from measurements of multi-spectral imagers (some with multi-angle view and polarization capabilities), IR sounders and lidar. Cloud properties under study include cloud amount, cloud height (in terms of pressure, temperature or altitude), cloud radiative properties (optical depth or emissivity), cloud thermodynamic phase and bulk microphysical properties (effective particle size and water path). Differences in average cloud properties, especially in the amount of high-level clouds, are mostly explained by the inherent instrument measurement capability for detecting and/or identifying optically thin cirrus, especially when overlying low-level clouds. The study of long-term variations with these datasets requires consideration of many factors. The monthly, gridded database presented here facilitates further assessments, climate studies, and the evaluation of climate models.

langue originaleAnglais
titreRadiation Processes in the Atmosphere and Ocean, IRS 2012 - Proceedings of the International Radiation Symposium (IRC/IAMAS)
Pages404-407
Nombre de pages4
Les DOIs
étatPublié - 22 mai 2013
EvénementInternational Radiation Symposium: Radiation Processes in the Atmosphere and Ocean, IRS 2012 - Berlin, Allemagne
Durée: 6 août 201210 août 2012

Série de publications

NomAIP Conference Proceedings
Volume1531
ISSN (imprimé)0094-243X
ISSN (Electronique)1551-7616

Une conférence

Une conférenceInternational Radiation Symposium: Radiation Processes in the Atmosphere and Ocean, IRS 2012
Pays/TerritoireAllemagne
La villeBerlin
période6/08/1210/08/12

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. SDG 13 - Action climatique
    SDG 13 Action climatique

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