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Validation of Aura Microwave Limb Sounder Ozone by ozonesonde and lidar measurements

  • Y. B. Jiang
  • , L. Froidevaux
  • , A. Lambert
  • , N. J. Livesey
  • , W. G. Read
  • , J. W. Waters
  • , B. Bojkov
  • , T. Leblanc
  • , I. S. McDermid
  • , S. Godin-Beekmann
  • , M. J. Filipiak
  • , R. S. Harwood
  • , R. A. Fuller
  • , W. H. Daffer
  • , B. J. Drouin
  • , R. E. Cofield
  • , D. T. Cuddy
  • , R. F. Jarnot
  • , B. W. Knosp
  • , V. S. Perun
  • M. J. Schwartz, W. V. Snyder, P. C. Stek, R. P. Thurstans, P. A. Wagner, M. Allaart, S. B. Andersen, G. Bodeker, B. Calpini, H. Claude, G. Coetzee, J. Davies, H. De Backer, H. Dier, M. Fujiwara, B. Johnson, H. Kelder, N. P. Leme, G. König-Langlo, E. Kyro, G. Laneve, L. S. Fook, J. Merrill, G. Morris, M. Newchurch, S. Oltmans, M. C. Parrondos, F. Posny, F. Schmidlin, P. Skrivankova, R. Stubi, D. Tarasick, A. Thompson, V. Thouret, P. Viatte, H. Vömel, P. von Der Gathen, M. Yela, G. Zablocki
  • Jet Propulsion Laboratory, California Institute of Technology
  • NASA Goddard Space Flight Center
  • Institut Pierre-Simon Laplace
  • University of Edinburgh
  • Royal Netherlands Meteorological Institute
  • Danish Meteorological Institute
  • NIWA
  • Aerological Station Payerne, MeteoSwiss
  • Deutscher Wetterdienst
  • South African Weather Service
  • Université Laval and Environment and Climate Change Canada
  • Royal Meteorological Institute of Belgium
  • Hokkaido University
  • National Oceanic and Atmospheric Administration
  • Instituto Nacional de Pesquisas Espaciais
  • Alfred Wegener Institute - Helmholtz Centre for Polar and Marine Research
  • Finnish Meteorological Institute
  • University of Rome La Sapienza
  • Malaysian Meteorological Service
  • University of Rhode Island
  • Valparaiso University
  • University of Alabama in Huntsville
  • Instituto Nacional de Tecnica Aeroespacial
  • Laboratoire de l'Atmosphere et des Cyclones
  • Czech Hydrometeorological Institute
  • Pennsylvania State University
  • CNRS
  • University of Colorado Boulder
  • Ministry of the Environment, Poland

Research output: Contribution to journalArticlepeer-review

120 Scopus citations

Abstract

We present validation studies of MLS version 2.2 upper tropospheric and stratospheric ozone profiles using ozonesonde and lidar data as well as climatological data. Ozone measurements from over 60 ozonesonde stations worldwide and three lidar stations are compared with coincident MLS data. The MLS ozone stratospheric data between 150 and 3 hPa agree well with ozonesonde measurements, within 8% for the global average. MLS values at 215 hPa are biased high compared to ozonesondes by ∼20% at middle to high latitude, although there is a lot of variability in this altitude region. Comparisons between MLS and ground-based lidar measurements from Mauna Loa, Hawaii, from the Table Mountain Facility, California, and from the Observatoire de Haute- Provence, France, give very good agreement, within ∼5%, for the stratospheric values. The comparisons between MLS and the Table Mountain Facility tropospheric ozone lidar show that MLS data are biased high by ∼30% at 215 hPa, consistent with that indicated by the ozonesonde data. We obtain better global average agreement between MLS and ozonesonde partial column values down to 215 hPa, although the average MLS values at low to middle latitudes are higher than the ozonesonde values by up to a few percent. MLS v2.2 ozone data agree better than the MLS v1.5 data with ozonesonde and lidar measurements. MLS tropical data show the wave one longitudinal pattern in the upper troposphere, with similarities to the average distribution from ozonesondes. High upper tropospheric ozone values are also observed by MLS in the tropical Pacific from June to November.

Original languageEnglish
Article numberD24S34
JournalJournal of Geophysical Research
Volume112
Issue number24
DOIs
StatePublished - Dec 27 2007
Externally publishedYes

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