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Present-Day Atmospheric Simulations Using GISS ModelE: Comparison to In Situ, Satellite, and Reanalysis Data

Journal of Climate · 2006 · Vol. 19(2) · pp. 153–192
Gavin A. SchmidtReto RüedyJames E. HansenIgor AleinovN. BellMike BauerSusanne E. BauerBrian CairnsV. M. CanutoY. ChengAnthony D. Del GenioG. FaluvegiA. D. FriendTim HallYongyun HuM. KelleyNancy Y. KiangD. KochAndy A. LacisJ. LernerKen K. LoR. L. MillerLarissa NazarenkoValdar OinasJ. P. PerlwitzJudith PerlwitzDavid RindAnastasia RomanouGary L. RussellMakiko SatoDrew ShindellPeter H. StoneShan SunNick TausnevD. ThresherMao‐Sung Yao

Abstract

Abstract A full description of the ModelE version of the Goddard Institute for Space Studies (GISS) atmospheric general circulation model (GCM) and results are presented for present-day climate simulations (ca. 1979). This version is a complete rewrite of previous models incorporating numerous improvements in basic physics, the stratospheric circulation, and forcing fields. Notable changes include the following: the model top is now above the stratopause, the number of vertical layers has increased, a new cloud microphysical scheme is used, vegetation biophysics now incorporates a sensitivity to humidity, atmospheric turbulence is calculated over the whole column, and new land snow and lake schemes are introduced. The performance of the model using three configurations with different horizontal and vertical resolutions is compared to quality-controlled in situ data, remotely sensed and reanalysis products. Overall, significant improvements over previous models are seen, particularly in upper-atmosphere temperatures and winds, cloud heights, precipitation, and sea level pressure. Data–model comparisons continue, however, to highlight persistent problems in the marine stratocumulus regions.

Climate variability and modelsMeteorological Phenomena and SimulationsAtmospheric and Environmental Gas DynamicsClimatologyEnvironmental scienceAtmospheric modelAtmosphere (unit)SatelliteAtmospheric circulationForcing (mathematics)MeteorologyAtmospheric sciencesPrecipitation

Funding

  • National Aeronautics and Space Administration
  • European Centre for Medium-Range Weather Forecasts
  • National Oceanic and Atmospheric Administration
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