Scinovex
article Open AccessTop 1% cited

The NCEP Climate Forecast System

Journal of Climate · 2006 · Vol. 19(15) · pp. 3483–3517
Subodh Kumar SahaSudhir NadigaC. ThiawJ. WangW. WangQ. ZhangHuug M. van den DoolHua PanShrinivas MoorthiDonald C. BehringerDiane StokesMalaquías PeñaStephen J. LordGlenn H. WhiteWesley EbisuzakiPeitao PengP. Xie

Abstract

Abstract The Climate Forecast System (CFS), the fully coupled ocean–land–atmosphere dynamical seasonal prediction system, which became operational at NCEP in August 2004, is described and evaluated in this paper. The CFS provides important advances in operational seasonal prediction on a number of fronts. For the first time in the history of U.S. operational seasonal prediction, a dynamical modeling system has demonstrated a level of skill in forecasting U.S. surface temperature and precipitation that is comparable to the skill of the statistical methods used by the NCEP Climate Prediction Center (CPC). This represents a significant improvement over the previous dynamical modeling system used at NCEP. Furthermore, the skill provided by the CFS spatially and temporally complements the skill provided by the statistical tools. The availability of a dynamical modeling tool with demonstrated skill should result in overall improvement in the operational seasonal forecasts produced by CPC. The atmospheric component of the CFS is a lower-resolution version of the Global Forecast System (GFS) that was the operational global weather prediction model at NCEP during 2003. The ocean component is the GFDL Modular Ocean Model version 3 (MOM3). There are several important improvements inherent in the new CFS relative to the previous dynamical forecast system. These include (i) the atmosphere–ocean coupling spans almost all of the globe (as opposed to the tropical Pacific only); (ii) the CFS is a fully coupled modeling system with no flux correction (as opposed to the previous uncoupled “tier-2” system, which employed multiple bias and flux corrections); and (iii) a set of fully coupled retrospective forecasts covering a 24-yr period (1981–2004), with 15 forecasts per calendar month out to nine months into the future, have been produced with the CFS. These 24 years of fully coupled retrospective forecasts are of paramount importance to the proper calibration (bias correction) of subsequent operational seasonal forecasts. They provide a meaningful a priori estimate of model skill that is critical in determining the utility of the real-time dynamical forecast in the operational framework. The retrospective dataset also provides a wealth of information for researchers to study interactive atmosphere–land–ocean processes.

Climate variability and modelsAtmospheric and Environmental Gas DynamicsMeteorological Phenomena and SimulationsClimatologyEnvironmental scienceClimate Forecast SystemForecast skillMeteorologyGlobal Forecast SystemClimate modelAtmosphere (unit)PrecipitationSea surface temperature

Funding

  • National Oceanic and Atmospheric Administration
Citations
1,138
FWCI
36.47
field-weighted impact
References
63
Percentile
100%
vs. same field & year
Citations per year
Cited by
The NCEP Climate Forecast System Reanalysis
Bulletin of the American Meteorological Society · 2010 · 5,262 citations
The Twentieth Century Reanalysis Project
Quarterly Journal of the Royal Meteorological Society · 2011 · 3,674 citations
The NCEP Climate Forecast System Version 2
Journal of Climate · 2013 · 3,425 citations
References
NCEP–DOE AMIP-II Reanalysis (R-2)
Bulletin of the American Meteorological Society · 2002 · 5,394 citations
DEVELOPMENT OF A EUROPEAN MULTIMODEL ENSEMBLE SYSTEM FOR SEASONAL-TO-INTERANNUAL PREDICTION (DEMETER)
Bulletin of the American Meteorological Society · 2004 · 996 citations
Theoretical Skill of Monte Carlo Forecasts
Monthly Weather Review · 1974 · 804 citations
The NCEP–NCAR 50–Year Reanalysis: Monthly Means CD–ROM and Documentation
Bulletin of the American Meteorological Society · 2001 · 4,335 citations
Isopycnal Mixing in Ocean Circulation Models
Journal of Physical Oceanography · 1990 · 3,251 citations
A Global Oceanic Data Assimilation System
Journal of Physical Oceanography · 1989 · 495 citations
Related articles
The NCEP Climate Forecast System Version 2
Journal of Climate · 2013 · 3,425 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.