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New gravity wave treatments for GISS climate models

  • Marvin A. Geller
  • , Tiehan Zhou
  • , Reto Ruedy
  • , Igor Aleinov
  • , Larissa Nazarenko
  • , Nikolai L. Tausnev
  • , Shan Sun
  • , Maxwell Kelley
  • , Ye Cheng
  • Columbia University
  • NASA Goddard Institute for Space Studies
  • Massachusetts Institute of Technology
  • National Oceanic and Atmospheric Administration

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Previous versions of GISS climate models have either used formulations of Rayleigh drag to represent unresolved gravity wave interactions with the model-resolved flow or have included a rather complicated treatment of unresolved gravity waves that, while being climate interactive, involved the specification of a relatively large number of parameters that were not well constrained by observations and also was computationally very expensive. Here, the authors introduce a relatively simple and computationally efficient specification of unresolved orographic and nonorographic gravity waves and their interaction with the resolved flow. Comparisons of the GISS model winds and temperatures with no gravity wave parameterization; with only orographic gravity wave parameterization; and with both orographic and nonorographic gravity wave parameterizations are shown to illustrate how the zonal mean winds and temperatures converge toward observations. The authors also show that the specifications of orographic and nonorographic gravity waves must be different in the Northern and Southern Hemispheres. Then results are presented where the nonorographic gravity wave sources are specified to represent sources from convection in the intertropical convergence zone and spontaneous emission from jet imbalances. Finally, a strategy to include these effects in a climate-dependent manner is suggested.

Original languageEnglish
Pages (from-to)3989-4002
Number of pages14
JournalJournal of Climate
Volume24
Issue number15
DOIs
StatePublished - Aug 2011

Keywords

  • Climate models
  • Gravity waves
  • Intertropical concergence zone
  • Orographic effects
  • Temperature
  • Wind

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