Access the full text.
Sign up today, get DeepDyve free for 14 days.
M. Chelliah, C. Ropelewski (2000)
Reanalyses-Based Tropospheric Temperature Estimates: Uncertainties in the Context of Global Climate Change DetectionJournal of Climate, 13
M. Ji, A. Leetmaa, J. Derber (1995)
An Ocean Analysis System for Seasonal to Interannual Climate StudiesMonthly Weather Review, 123
N. Collins, G. Theurich, C. DeLuca, M. Suárez, A. Trayanov, V. Balaji, Peggy Li, Weiyu Yang, C. Hill, A. Silva (2005)
Design and Implementation of Components in the Earth System Modeling FrameworkInternational Journal of High Performance Computing Applications, 19
(2002)
Param - eterization of solar radiation transfer in the NCEP models
(1994)
The Reanalysis Database, Extended Abstracts
H. Pan, Wan Wu (1995)
Implementing a mass flux convection parameterization package for the NMC medium-range forecast model
M. Fiorino (2003)
ANALYSIS AND FORECASTS OF TROPICAL CYCLONES IN THE ECMWF 40-YEAR REANALYSIS ( ERA-40 )
Kuan Xu, D. Randall (1996)
A Semiempirical Cloudiness Parameterization for Use in Climate ModelsJournal of the Atmospheric Sciences, 53
R. Showstack (2009)
World Ocean DatabaseEos, Transactions American Geophysical Union, 90
(2007)
The FMS coupler architecture
(1983)
The sensitivity of the time-mean large-scale f low to cumulus convection in the ECMWF model
R. Reynolds, Thomas Smith, Chunying Liu, D. Chelton, K. Casey, M. Schlax (2007)
Daily High-Resolution-Blended Analyses for Sea Surface TemperatureJournal of Climate, 20
L. Bengtsson, P. Arkin, P. Berrisford, P. Bougeault, C. Folland, C. Gordon, K. Haines, K. Hodges, P. Jones, P. Kållberg, N. Rayner, A. Simmons, D. Stammer, P. Thorne, S. Uppala, R. Vose (2007)
THE NEED FOR A DYNAMICAL CLIMATE REANALYSISBulletin of the American Meteorological Society, 88
R. Ray, R. Ponte (2003)
Barometric Tides from ECMWF Operational AnalysesAnnales Geophysicae, 21
Yun Fan, H. Dool (2008)
A global monthly land surface air temperature analysis for 1948-presentJournal of Geophysical Research, 113
S. Schubert, W. Min, L. Takacs, J. Joiner (1997)
Reanalysis of historical observations and its role in the development of the goddard EOS climate Data Assimilation SystemAdvances in Space Research, 19
Published online in Wiley InterScience (www.interscience.wiley.com) DOI: 10.1002/hyp.6720 Enhancements to, and forthcoming developments in the Interactive Multisensor Snow and Ice Mapping System (IMS) †
(1996)
The Air Force Global Weather Central snow analysis model
W. Large, J. McWilliams, S. Doney (1994)
Oceanic vertical mixing: a review and a model with a nonlocal boundary layer parameterizationOceanographic Literature Review, 7
I. Velicogna, J. Wahr, Huug Dool (2001)
Can surface pressure be used to remove atmospheric
Q. Liu, F. Weng (2009)
Recent Stratospheric Temperature Observed from Satellite MeasurementsSola, 5
M. Kanamitsu, W. Ebisuzaki, J. Woollen, Shi-Keng Yang, J. Hnilo, M. Fiorino, G. Potter (2002)
NCEP–DOE AMIP-II Reanalysis (R-2)Bulletin of the American Meteorological Society, 83
J. Deardorff (1980)
Cloud Top Entrainment InstabilityJournal of the Atmospheric Sciences, 37
S. Uppala, P. Kållberg, A. Simmons, U. Andrae, V. Bechtold, M. Fiorino, J. Gibson, J. Haseler, A. Hernandez, G. Kelly, Xiao‐Ming Li, K. Onogi, S. Saarinen, N. Sokka, R. Allan, E. Andersson, K. Arpe, M. Balmaseda, A. Beljaars, L. Berg, J. Bidlot, N. Bormann, S. Caires, F. Chevallier, A. Dethof, M. Dragosavac, M. Fisher, M. Fuentes, S. Hagemann, E. Holm, B. Hoskins, L. Isaksen, P. Janssen, R. Jenne, A. Mcnally, J. Mahfouf, J. Morcrette, N. Rayner, R. Saunders, P. Simon, A. Sterl, K. Trenberth, A. Untch, D. Vasiljevic, P. Viterbo, J. Woollen (2005)
The ERA‐40 re‐analysisQuarterly Journal of the Royal Meteorological Society, 131
G. Compo, J. Whitaker, P. Sardeshmukh (2006)
Feasibility of a 100-Year Reanalysis Using Only Surface Pressure DataBulletin of the American Meteorological Society, 87
D. Kleist, D. Parrish, J. Derber, R. Treadon, R. Errico, Runhua Yang (2009)
Improving Incremental Balance in the GSI 3DVAR Analysis SystemMonthly Weather Review, 137
S. Saha, S. Nadiga, C. Thiaw, J. Wang, Wanqiu Wang, Q. Zhang, H. Dool, H. Pan, S. Moorthi, D. Behringer, Diane Stokes, M. Peña, S. Lord, G. White, W. Ebisuzaki, Peitao Peng, P. Xie (2006)
The NCEP Climate Forecast SystemJournal of Climate, 19
Xiouhua Fu, Bin Wang (2004)
Differences of Boreal Summer Intraseasonal Oscillations Simulated in an Atmosphere–Ocean Coupled Model and an Atmosphere-Only Model*Journal of Climate, 17
Jordan Alp (2003)
Sub-Grid Scale Mountain Blocking at NCEP
B. Bourlès, R. Lumpkin, M. Mcphaden, F. Hernandez, P. Nobre, E. Campos, Lisan Yu, S. Planton, A. Busalacchi, A. Moura, J. Servain, J. Trotte (2008)
THE PIRATA PROGRAM History, Accomplishments, and Future Directions *Bulletin of the American Meteorological Society, 89
F. Lott, Martin Miller (1997)
A new subgrid‐scale orographic drag parametrization: Its formulation and testingQuarterly Journal of the Royal Meteorological Society, 123
V. Krasnopolsky, L. Breaker, W. Gemmill (1995)
A neural network as a nonlinear transfer function model for retrieving surface wind speeds from the special sensor microwave imagerOceanographic Literature Review, 1
T. Hamill, J. Whitaker, S. Mullen (2006)
REFORECASTS An Important Dataset for Improving Weather PredictionsBulletin of the American Meteorological Society, 87
(1996)
Short - wave radiation calculations in the NCEP ’ s global model
Alan Thorpe (2012)
European Centre for Medium-Range Weather Forecasts
(1996)
Automated passive microwave sea ice concentration analysis at NCEP . NCEP OMB Tech . Note 120 , 13 pp . — — , 2009 : A posteriori filtering of sea ice concentration analyses
D. Behringer, M. Ji, A. Leetmaa (1998)
An Improved Coupled Model for ENSO Prediction and Implications for Ocean Initialization. Part I: The Ocean Data Assimilation SystemMonthly Weather Review, 126
R. Lindzen, J. Holton (1968)
A Theory of the Quasi-Biennial OscillationJournal of the Atmospheric Sciences, 25
M. Daniel, S. and, S. Fels (1991)
The simplified exchange method revisited: An accurate, rapid method for computation of infrared cooling rates and fluxesJournal of Geophysical Research, 96
S. Griffies, M. Harrison, R. Pacanowski, A. Rosati, Zhi-Pei Liang, M. Schmidt, H. Simmons, R. Slater (2004)
A Technical Guide to MOM4
David Randall (1980)
Conditional instability of the first kind upside-down. [in stratocumulus clouds]
J. Wickert, C. Reigber, G. Beyerle, R. König, C. Marquardt, T. Schmidt, L. Grunwaldt, R. Galas, T. Meehan, W. Melbourne, K. Hocke (2001)
Atmosphere sounding by GPS radio occultation: First results from CHAMPGeophysical Research Letters, 28
Song‐You Hong, H. Pan (1996)
Nonlocal Boundary Layer Vertical Diffusion in a Medium-Range Forecast ModelMonthly Weather Review, 124
G. Rutledge, J. Alpert, W. Ebisuzaki (2006)
NOMADS A Climate and Weather Model Archive at the National Oceanic and Atmospheric AdministrationBulletin of the American Meteorological Society, 87
K. Onogi (2007)
The JRA-25 ReanalysisJournal of the Meteorological Society of Japan, 85
(1989)
Condensation and cloud studies
E. Mlawer, Steven Taubman, P. Brown, M. Iacono, S. Clough (1997)
Radiative transfer for inhomogeneous atmospheres: RRTM, a validated correlated-k model for the longwaveJournal of Geophysical Research, 102
S. English, R. Renshaw, P. Dibben, Andrew Smith, P. Rayer, C. Poulsen, F. Saunders, J. Eyre (2000)
A comparison of the impact of TOVS arid ATOVS satellite sounding data on the accuracy of numerical weather forecastsQuarterly Journal of the Royal Meteorological Society, 126
R. Purser, Wan Wu, David Parrish, N. Roberts (2003)
Numerical Aspects of the Application of Recursive Filters to Variational Statistical Analysis. Part II: Spatially Inhomogeneous and Anisotropic General CovariancesMonthly Weather Review, 131
(1994)
Quality Control in the Reanalysis System, Extended Abstracts, AMS 10 Conference on Numerical Weather Prediction, Portland, OR
T. Mo, M. Goldberg, D. Crosby, Z. Cheng (2001)
Recalibration of the NOAA microwave sounding unitJournal of Geophysical Research, 106
S. Griffies, R. Hallberg (2000)
Biharmonic Friction with a Smagorinsky-Like Viscosity for Use in Large-Scale Eddy-Permitting Ocean ModelsMonthly Weather Review, 128
(2010)
2010a: Operational NCEP sea ice concentration analysis
(2007)
The Global Ocean Data
R. Seaman (2003)
The history of PAOBs in the Australian Bureau of Meteorology
C. Zou, M. Goldberg, Z. Cheng, N. Grody, J. Sullivan, C. Cao, D. Tarpley (2006)
Recalibration of microwave sounding unit for climate studies using simultaneous nadir overpassesJournal of Geophysical Research, 111
D. Parrish, J. Derber (1992)
The National Meteorological Center's spectral-statistical interpolation analysis systemMonthly Weather Review, 120
P. Gent, J. McWilliams (1990)
Isopycnal mixing in ocean circulation modelsJournal of Physical Oceanography, 20
L. Cucurull, J. Derber (2008)
Operational Implementation of COSMIC Observations into NCEP’s Global Data Assimilation SystemWeather and Forecasting, 23
C. Zou, M. Gao, M. Goldberg (2009)
Error Structure and Atmospheric Temperature Trends in Observations from the Microwave Sounding UnitJournal of Climate, 22
(1979)
The TIROS-N Operational Vertical Sounder
P. Xie, P. Arkin (1997)
Global Precipitation: A 17-Year Monthly Analysis Based on Gauge Observations, Satellite Estimates, and Numerical Model OutputsBulletin of the American Meteorological Society, 78
R. Lumpkin, M. Pazos
Measuring surface currents with Surface Velocity Program drifters : the instrument , its data , and some recent results
Q. Liu, F. Weng (2006)
NOTES AND CORRESPONDENCE Advanced Doubling-Adding Method for Radiative Transfer in Planetary Atmospheres
K. Pegion, B. Kirtman (2008)
The Impact of Air–Sea Interactions on the Simulation of Tropical Intraseasonal VariabilityJournal of Climate, 21
J. Thiébaux, E. Rogers, Wanqiu Wang, B. Katz (2003)
A New High-Resolution Blended Real-Time Global Sea Surface Temperature AnalysisBulletin of the American Meteorological Society, 84
C. Rocken, R. Anthes, M. Exner, D. Hunt, S. Sokolovskiy, R. Ware, M. Gorbunov, W. Schreiner, D. Feng, B. Herman, Y. Kuo, X. Zou (1997)
Analysis and validation of GPS/MET data in the neutral atmosphereJournal of Geophysical Research, 102
M. Bender, I. Ginis, R. Tuleya, B. Thomas, T. Marchok (2007)
The Operational GFDL Coupled Hurricane–Ocean Prediction System and a Summary of Its PerformanceMonthly Weather Review, 135
Cheng Zhi-hua (2005)
THE MASSThe Stripping of the Altars
R. Kistler, E. Kalnay, W. Collins, S. Saha, G. White, J. Woollen, M. Chelliah, W. Ebisuzaki, M. Kanamitsu, V. Kousky, H. Dool, R. Jenne, M. Fiorino (2001)
The NCEP–NCAR 50-Year Reanalysis: Monthly Means CD-ROM and DocumentationBulletin of the American Meteorological Society, 82
(1996)
Zwally, 2007: Sea ice concentrations from Nimbus-7 SMMR and DMSP SSM/I passive microwave data, 1978-1996
G. Davis (2007)
History of the NOAA satellite programJournal of Applied Remote Sensing, 1
A. Dai, Junhong Wang (1999)
Diurnal and Semidiurnal Tides in Global Surface Pressure FieldsJournal of the Atmospheric Sciences, 56
L. Cucurull (2010)
Improvement in the Use of an Operational Constellation of GPS Radio Occultation Receivers in Weather ForecastingWeather and Forecasting, 25
(1999)
The HURISK model: An adaptation for the Southern Hemisphere (A user’s manual)
S. Woolnough, J. Slingo, B. Hoskins (2000)
The Relationship between Convection and Sea Surface Temperature on Intraseasonal TimescalesJournal of Climate, 13
C. Peters-Lidard, P. Houser, Yudong Tian, Sujay Kumar, J. Geiger, S. Olden, L. Lighty, B. Doty, P. Dirmeyer, J. Adams, K. Mitchell, E. Wood, J. Sheffield (2007)
High-performance Earth system modeling with NASA/GSFC’s Land Information SystemInnovations in Systems and Software Engineering, 3
M. Bosilovich (2008)
NASA’s modern era retrospective-analysis for research and applications: integrating Earth observations, 1
B. King (1999)
ARGO: The Global Array of Profiling Floats
(1999)
Improvements in hurricane initialization and forecasting at NCEP with global and regional (GFDL) models
D. Paolino, Q. Yang, B. Doty, J. Kinter, J. Shukla, D. Straus (1995)
A Pilot Reanalysis Project at COLABulletin of the American Meteorological Society, 76
(2005)
Sea ice impacts on GFS forecasts at high latitudes
D. Behringer, Y. Xue (2003)
EVALUATION OF THE GLOBAL OCEAN DATA ASSIMILATION SYSTEM AT NCEP: THE PACIFIC OCEAN
W. Gemmill, V. Krasnopolsky (1999)
The Use of SSM/I Data in Operational Marine Analysis*Weather and Forecasting, 14
(2008)
The development of the first-order time extrapolation to the observation (FOTO) method and its application in the NCEP global data assimilation system
R. Purser, Wandi Wu, David Parrish, N. Roberts
Numerical Aspects of the Application of Recursive Filters to Variational Statistical Analysis. Part I: Spatially Homogeneous and Isotropic Gaussian Covariances
M. Iacono, E. Mlawer, S. Clough, J. Morcrette (2000)
Impact of an improved longwave radiation model, RRTM, on the energy budget and thermodynamic properties of the NCAR community climate model, CCM3Journal of Geophysical Research, 105
(1997)
ERA description
J. Derber, A. Rosati (1989)
A Global Oceanic Data Assimilation SystemJournal of Physical Oceanography, 19
H. Juang (2011)
A Multiconserving Discretization with Enthalpy as a Thermodynamic Prognostic Variable in Generalized Hybrid Vertical Coordinates for the NCEP Global Forecast SystemMonthly Weather Review, 139
G. Gaspari, S. Cohn, Jing Guo, S. Pawson (2006)
Construction and application of covariance functions with variable length‐fieldsQuarterly Journal of the Royal Meteorological Society, 132
(1990)
Comprehensive Hydrostatic Quality Control at the National Meteorological CenterMonthly Weather Review, 118
(1994)
Sea ice algorithm in NASA Sea Ice Validation Program for the Defense Meteorological Satellite Program Special Sensor Microwave Imager: Final Report. NASA Tech. Memo. 104559
E. Anderson, H. Järvinen (1999)
Variational quality controlQuarterly Journal of the Royal Meteorological Society, 125
(2001)
Changes to the 2001 NCEP operationalMRF/AVN global analysis/forecast system
Hau-Lu Pan, L. Mahrt (1987)
Interaction between soil hydrology and boundary-layer developmentBoundary-Layer Meteorology, 38
L. Flynn, D. McNamara, C. Beck, I. Petropavlovskikh, E. Beach, Y. Pachepsky, Y. Li, M. DeLand, L. Huang, C. Long, R. Tiruchirapalli, S. Taylor (2009)
Measurements and products from the Solar Backscatter Ultraviolet (SBUV/2) and Ozone Mapping and Profiler Suite (OMPS) instrumentsInternational Journal of Remote Sensing, 30
Song‐You Hong, H. Pan (1998)
Convective Trigger Function for a Mass-Flux Cumulus Parameterization SchemeMonthly Weather Review, 126
J. Derber, D. Parrish, S. Lord (1991)
The New Global Operational Analysis System at the National Meteorological CenterWeather and Forecasting, 6
R. Assel, D. Norton, Kevin Cronk (2002)
A Great Lakes ice cover digital data set for winters 1973-2000
Chem2d-opp: a New Linearized Gas-phase Ozone Photochemistry Parameterization for High-altitude Nwp and Climate Models
R. Ponte, R. Ray (2002)
Atmospheric pressure corrections in geodesy and oceanography: A strategy for handling air tidesGeophysical Research Letters, 29
R. Murray (1996)
Explicit Generation of Orthogonal Grids for Ocean ModelsJournal of Computational Physics, 126
S. Fels, M. Schwarzkopf (1975)
The Simplified Exchange Approximation: A New Method for Radiative Transfer CalculationsJournal of the Atmospheric Sciences, 32
M. Mcphaden, A. Busalacchi, R. Cheney, J. Donguy, K. Gage, D. Halpern, M. Ji, P. Julian, G. Meyers, G. Mitchum, P. Niiler, J. Picaut, R. Reynolds, N. Smith, K. Takeuchi (1998)
The Tropical Ocean‐Global Atmosphere observing system: A decade of progressJournal of Geophysical Research, 103
B. Haurwitz, A. Cowley (1973)
The diurnal and semidiurnal barometric oscillations global distribution and annual variationpure and applied geophysics, 102
Shinya Kobayashi, M. Matricardi, D. Dee, S. Uppala (2009)
Toward a consistent reanalysis of the upper stratosphere based on radiance measurements from SSU and AMSU‐AQuarterly Journal of the Royal Meteorological Society, 135
S. Moorthi, R. Sun, Heng Xiao, R. Mechoso (2010)
Southeast Pacific low-cloud simulation in the NCEP GFS : role of vertical mixing and shallow convection
H. Sundqvist, E. Berge, J. Kristjánsson (1989)
Condensation and Cloud Parameterization Studies with a Mesoscale Numerical Weather Prediction ModelMonthly Weather Review, 117
W. Smith, Fred Nagle, C. Hayden, H. Woolf (1981)
Vertical mass and moisture structure from TIROS-NAdvances in Space Research, 1
(2007)
Daily real-time global sea surface temperature: A high-resolution analysis
R. Akmaev, H. Juang (2008)
Using enthalpy as a prognostic variable in atmospheric modelling with variable compositionQuarterly Journal of the Royal Meteorological Society, 134
A. Mcnally, J. Derber, W. Wu, Boris Katz (2000)
The use of TOVS level‐1b radiances in the NCEP SSI analysis systemQuarterly Journal of the Royal Meteorological Society, 126
A. Weaver, P. Courtier (2001)
Correlation modelling on the sphere using a generalized diffusion equationQuarterly Journal of the Royal Meteorological Society, 127
M. Chou, M. Suárez, Chang‐Hoi Ho, M. Yan, Kyu-Tae Lee (1998)
Parameterizations for Cloud Overlapping and Shortwave Single-Scattering Properties for Use in General Circulation and Cloud Ensemble ModelsJournal of Climate, 11
H. Juang (2005)
Discrete generalized hybrid vertical coordinates by a mass, energy and angular momentum conserving vertical finite-difference scheme
(1999)
Documentation and Quality Control Version 2.0
O. Viron, Gaëtan Schwarzbaum, F. Lott, V. Dehant (2005)
Diurnal and subdiurnal effects of the atmosphere on the Earth rotation and geocenter motionJournal of Geophysical Research, 110
M. Mcphaden, G. Meyers, K. Ando, Y. Masumoto, V. Murty, M. Ravichandran, F. Syamsudin, J. Vialard, L. Yu, Weidong Yu (2009)
RAMA: The Research Moored Array for African–Asian–Australian Monsoon Analysis and Prediction*Bulletin of the American Meteorological Society, 90
(1991)
New NMC Operational OI Quality Control, Preprints
K. Trenberth, Lesley Smith (2005)
The Mass of the Atmosphere: A Constraint on Global AnalysesJournal of Climate, 18
(1996)
Sensitivity of cyclogenesis to lower tropospheric enhancement of gravity wave drag using the environmental modeling center medium range model
冨山 芳幸 (2007)
「Completing the Forecast : Characterizing and Communicating Uncertainty for Better Decisions Using Weather and Climate Forecasts」, National Research Council著, The National Academies Press, 2006年, 112頁, 25.88ドル, ISBN-13:978-0-309-10255-1(本だな), 54
S. Griffies, A. Gnanadesikan, R. Pacanowski, V. Larichev, J. Dukowicz, Richard Smith (1998)
Isoneutral Diffusion in a z-Coordinate Ocean ModelJournal of Physical Oceanography, 28
S. Clough, M. Shephard, E. Mlawer, J. Delamere, M. Iacono, K. Cady-Pereira, S. Boukabara, P. Brown (2005)
Atmospheric radiative transfer modeling: a summary of the AER codesJournal of Quantitative Spectroscopy & Radiative Transfer, 91
Beryl Graham (2003)
Digital Media
R. Lumpkin, M. Pazos (2007)
Lagrangian Analysis and Prediction of Coastal and Ocean Dynamics: Measuring surface currents with Surface Velocity Program drifters: the instrument, its data, and some recent results
(1957)
1957: A coordinate system with some special advantages for numerical forecasting
C. Accadia, Stefano Mariani, M. Casaioli, A. Lavagnini, A. Speranza (2003)
Sensitivity of Precipitation Forecast Skill Scores to Bilinear Interpolation and a Simple Nearest-Neighbor Average Method on High-Resolution Verification GridsWeather and Forecasting, 18
F. Weng, Yong Han, P. Delst, Q. Liu, T. Kleespies, B. Yan, J. Marshall (2006)
JCSDA Community Radiative Transfer Model (CRTM) : version 1
J. Derber, Wan Wu (1998)
The Use of TOVS Cloud-Cleared Radiances in the NCEP SSI Analysis SystemMonthly Weather Review, 126
Qingyun Zhao, F. Carr (1997)
A Prognostic Cloud Scheme for Operational NWP ModelsMonthly Weather Review, 125
R. Dworak, J. Key (2009)
Twenty Years of Polar Winds from AVHRR: Validation and Comparison with ERA-40Journal of Applied Meteorology and Climatology, 48
P. Xie, A. Yatagai, Mingyue Chen, T. Hayasaka, Y. Fukushima, Changming Liu, Song Yang (2007)
A Gauge-Based Analysis of Daily Precipitation over East AsiaJournal of Hydrometeorology, 8
F. Mesinger, G. Dimego, E. Kalnay, P. Shafran, W. Ebisuzaki, D. Jovic, J. Woollen, K. Mitchell, E. Rogers, Michael Ek, Yun Fan, R. Grumbine, W. Higgins, Hong Li, Ying Lin, G. Manikin, David Parrish, Wei Shi (2006)
NORTH AMERICAN REGIONAL REANALYSISBulletin of the American Meteorological Society, 87
Tianlei Yu, M. Iredell, D. Keyser (1997)
Global Data Assimilation and Forecast Experiments Using SSM/I Wind Speed Data Derived from a Neural Network AlgorithmWeather and Forecasting, 12
M. Ek, K. Mitchell, Ying Lin, E. Rogers, P. Grunmann, V. Koren, G. Gayno, J. Tarpley (2003)
Implementation of Noah land surface model advances in the National Centers for Environmental Prediction operational mesoscale Eta modelJournal of Geophysical Research, 108
T. Markus, D. Cavalieri (2009)
The AMSR-E NT2 sea ice concentration algorithm: Its basis and implementationJournal of remote sensing, 29
M. Cai, Chul‐Su Shin, H. Dool, Wanqiu Wang, S. Saha, Arun Kumar (2009)
The Role of Long-Term Trends in Seasonal Predictions: Implication of Global Warming in the NCEP CFSWeather and Forecasting, 24
Wan Wu, R. Purser, David Parrish (2002)
Three-Dimensional Variational Analysis with Spatially Inhomogeneous CovariancesMonthly Weather Review, 130
(2010)
2010b: CFSR Sea ice analysis
Jeffrey Anderson, T. Hoar, K. Raeder, H. Liu, N. Collins, R. Torn, A. Avellano (2009)
The Data Assimilation Research Testbed: A Community FacilityBulletin of the American Meteorological Society, 90
The AMMA Observing Network Contribution to GCOS
T. Markus, D. Cavalieri (2000)
An enhancement of the NASA Team sea ice algorithmIEEE Trans. Geosci. Remote. Sens., 38
L. Gandin (1988)
Complex Quality Control of Meteorological ObservationsMonthly Weather Review, 116
H. Dool, S. Saha, J. Schemm, Jinfang Huang (1997)
A temporal interpolation method to obtain hourly atmospheric surface pressure tides in Reanalysis 1979-1995Journal of Geophysical Research, 102
The NCEP Climate Forecast System Reanalysis (CFSR) was completed for the 31-yr period from 1979 to 2009, in January 2010. The CFSR was designed and executed as a global, high-resolution coupled atmosphereoceanland surfacesea ice system to provide the best estimate of the state of these coupled domains over this period. The current CFSR will be extended as an operational, real-time product into the future. New features of the CFSR include 1) coupling of the atmosphere and ocean during the generation of the 6-h guess field, 2) an interactive sea ice model, and 3) assimilation of satellite radiances by the Gridpoint Statistical Interpolation (GSI) scheme over the entire period. The CFSR global atmosphere resolution is ~38 km (T382) with 64 levels extending from the surface to 0.26 hPa. The global ocean's latitudinal spacing is 0.25 at the equator, extending to a global 0.5 beyond the tropics, with 40 levels to a depth of 4737 m. The global land surface model has four soil levels and the global sea ice model has three layers. The CFSR atmospheric model has observed variations in carbon dioxide (CO2) over the 19792009 period, together with changes in aerosols and other trace gases and solar variations. Most available in situ and satellite observations were included in the CFSR. Satellite observations were used in radiance form, rather than retrieved values, and were bias corrected with spin up runs at full resolution, taking into account variable CO2 concentrations. This procedure enabled the smooth transitions of the climate record resulting from evolutionary changes in the satellite observing system.CFSR atmospheric, oceanic, and land surface output products are available at an hourly time resolution and a horizontal resolution of 0.5 latitude 0.5 longitude. The CFSR data will be distributed by the National Climatic Data Center (NCDC) and NCAR. This reanalysis will serve many purposes, including providing the basis for most of the NCEP Climate Prediction Center's operational climate products by defining the mean states of the atmosphere, ocean, land surface, and sea ice over the next 30-yr climate normal (19812010); providing initial conditions for historical forecasts that are required to calibrate operational NCEP climate forecasts (from week 2 to 9 months); and providing estimates and diagnoses of the Earth's climate state over the satellite data period for community climate research.Preliminary analysis of the CFSR output indicates a product that is far superior in most respects to the reanalysis of the mid-1990s. The previous NCEPNCAR reanalyses have been among the most used NCEP products in history; there is every reason to believe the CFSR will supersede these older products both in scope and quality, because it is higher in time and space resolution, covers the atmosphere, ocean, sea ice, and land, and was executed in a coupled mode with a more modern data assimilation system and forecast model.
Bulletin of the American Meteorological Society – American Meteorological Society
Published: Aug 12, 2010
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.