NOGAPS-ALPHA Simulations of the 2002 Southern Hemisphere Stratospheric Major Warming

Author:

Allen Douglas R.1,Coy Lawrence2,Eckermann Stephen D.2,McCormack John P.2,Manney Gloria L.3,Hogan Timothy F.4,Kim Young-Joon4

Affiliation:

1. Remote Sensing Division, Naval Research Laboratory, Washington, D.C

2. E. O. Hulburt Center for Space Research, Naval Research Laboratory, Washington, D.C

3. Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California, and New Mexico Highlands University, Las Vegas, New Mexico

4. Marine Meteorology Division, Naval Research Laboratory, Monterey, California

Abstract

Abstract A high-altitude version of the Navy Operational Global Atmospheric Prediction System (NOGAPS) spectral forecast model is used to simulate the unusual September 2002 Southern Hemisphere stratospheric major warming. Designated as NOGAPS-Advanced Level Physics and High Altitude (NOGAPS-ALPHA), this model extends from the surface to 0.005 hPa (∼85 km altitude) and includes modifications to multiple components of the operational NOGAPS system, including a new radiative heating scheme, middle-atmosphere gravity wave drag parameterizations, hybrid vertical coordinate, upper-level meteorological initialization, and radiatively active prognostic ozone with parameterized photochemistry. NOGAPS-ALPHA forecasts (hindcasts) out to 6 days capture the main features of the major warming, such as the zonal mean wind reversal, planetary-scale wave amplification, large upward Eliassen–Palm (EP) fluxes, and splitting of the polar vortex in the middle stratosphere. Forecasts beyond 6 days have reduced upward EP flux in the lower stratosphere, reduced amplitude of zonal wavenumbers 2 and 3, and a middle stratospheric vortex that does not split. Three-dimensional EP-flux diagnostics in the troposphere reveal that the longer forecasts underestimate upward-propagating planetary wave energy emanating from a significant blocking pattern over the South Atlantic that played a large role in forcing the major warming. Forecasts of less than 6 days are initialized with the blocking in place, and therefore are not required to predict the blocking onset. For a more thorough skill assessment, NOGAPS-ALPHA forecasts over 3 weeks during September–October 2002 are compared with operational NOGAPS 5-day forecasts made at the time. NOGAPS-ALPHA forecasts initialized with 2002 operational NOGAPS analyses show a modest improvement in skill over the NOGAPS operational forecasts. An additional, larger improvement is obtained when NOGAPS-ALPHA is initialized with reanalyzed 2002 fields produced with the currently operational (as of October 2003) Naval Research Laboratory (NRL) Atmospheric Variational Data Assimilation System (NAVDAS). Thus the combination of higher model top, better physical parameterizations, and better initial conditions all yield improved forecasting skill over the NOGAPS forecasts issued operationally at the time.

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference60 articles.

1. Unusual stratospheric transport and mixing during the 2002 Antarctic winter.;Allen;Geophys. Res. Lett,2003

2. Middle Atmosphere Dynamics.;Andrews,1987

3. Baker, N. L., T. F.Hogan, W. F.Campbell, R. L.Pauley, and S. D.Swadley, 2005: The impact of AMSU-A radiance assimilation in the U.S. Navy's Operational Global Atmospheric Prediction System (NOGAPS). Naval Research Laboratory Rep. NRL/MR/7530–05-8836, 22 pp.

4. Baldwin, M. P., T.Hirooka, A.O'Neill, and S.Yoden, 2003: Major stratospheric warming in the Southern Hemisphere in 2002: Dynamical aspects of the ozone hole split. SPARC Newsletter, No. 20, World Climate Research Program, 24–26.

5. Southern Hemisphere medium-scale waves and total ozone disturbances in a spectral general circulation model.;Cariolle;J. Geophys. Res,1986

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