The ERA‐Interim reanalysis: configuration and performance of the data assimilation system
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J. Thepaut | D. Dee | S. Uppala | A. Simmons | P. Berrisford | P. Poli | S. Kobayashi | U. Andrae | M. Balmaseda | G. Balsamo | P. Bauer | P. Bechtold | A. Beljaars | L. Van de Berg | J. Bidlot | N. Bormann | C. Delsol | R. Dragani | M. Fuentes | A. Geer | L. Haimberger | S. Healy | H. Hersbach | E. Holm | L. Isaksen | P. Kållberg | M. Köhler | M. Matricardi | A. Mcnally | B. Monge-Sanz | J. Morcrette | B.-K Park | C. Peubey | P. de Rosnay | C. Tavolato | F. Vitart | G. Balsamo | P. Rosnay | A. Beljaars | L. V. D. Berg | B. Park | Christina Tavolato
[1] T. Murakami. Cloudiness Fluctuations during the Summer Monsoon , 1976 .
[2] G. Paltridge,et al. Radiative processes in meteorology and climatology , 1976 .
[3] Daniel Cariolle,et al. Southern hemisphere medium-scale waves and total ozone disturbances in a spectral general circulation model , 1986 .
[4] I. Troen,et al. A simple model of the atmospheric boundary layer; sensitivity to surface evaporation , 1986 .
[5] A. J. Gadd,et al. FORECASTING THE STORM OF 15–16 OCTOBER 1987* , 1988 .
[6] M. Jarraud,et al. Prediction of an Exceptional Storm over France and Southern England (15–16 October 1987) , 1989 .
[7] G. Shutts. Dynamical aspects of the October storm, 1987: a study of a successful fine-mesh simulation , 1990 .
[8] Harry H. Hendon,et al. A Composite Study of Onset of the Australian Summer Monsoon , 1990 .
[9] Tim N. Palmer,et al. Tropical-Extratropical Interaction Associated with the 30–60 Day Oscillation and Its Impact on Medium and Extended Range Prediction , 1990 .
[10] Piero Lionello,et al. Assimilation of altimeter data in a global third-generation wave model , 1992 .
[11] S. Klein,et al. The Seasonal Cycle of Low Stratiform Clouds , 1993 .
[12] Richard B. Rood,et al. An assimilated dataset for Earth science applications , 1993 .
[13] Pedro Viterbo,et al. The sensitivity of winter evaporation to the formulation of aerodynamic resistance in the ECMWF model , 1994 .
[14] P. Courtier,et al. A strategy for operational implementation of 4D‐Var, using an incremental approach , 1994 .
[15] Jean-François Mahfouf,et al. A new snow parameterization for the Météo-France climate model: Part I: validation in stand-alone experiments , 1995 .
[16] Ulrike Langematz,et al. Update on the global ozone climatology and on concurrent ozone and temperature trends , 1995, Remote Sensing.
[17] Jean-François Mahfouf,et al. A new snow parameterization for the Météo-France climate model , 1995 .
[18] M. Mcphaden,et al. Oceanic Equatorial Waves and the 1991–93 El Niño , 1995 .
[19] Pedro Viterbo,et al. An Improved Land Surface Parameterization Scheme in the ECMWF Model and Its Validation. , 1995 .
[20] L. Phalippou,et al. Variational retrieval of humidity profile, wind speed and cloud liquid‐water path with the SSM/I: Potential for numerical weather prediction , 1996 .
[21] Philippe Courtier,et al. Dynamical structure functions in a four‐dimensional variational assimilation: A case study , 1996 .
[22] R. Reynolds,et al. The NCEP/NCAR 40-Year Reanalysis Project , 1996, Renewable Energy.
[23] F. Wentz. A well‐calibrated ocean algorithm for special sensor microwave / imager , 1997 .
[24] Brian J. Kerridge,et al. Height-resolved ozone information in the troposphere and lower stratosphere from GOME , 1997 .
[25] David L. T. Anderson,et al. Scatterometer data interpretation: Estimation and validation of the transfer function CMOD4 , 1997 .
[26] Mian Chin,et al. Contribution of different aerosol species to the global aerosol extinction optical thickness: Estimates from model results , 1997 .
[27] A. Lock. The parametrization of entrainment in cloudy boundary layers , 1998 .
[28] P. Courtier,et al. Extended assimilation and forecast experiments with a four‐dimensional variational assimilation system , 1998 .
[29] P. Courtier,et al. The ECMWF implementation of three‐dimensional variational assimilation (3D‐Var). I: Formulation , 1998 .
[30] P. Koepke,et al. Optical Properties of Aerosols and Clouds: The Software Package OPAC , 1998 .
[31] F. Veerse,et al. Multiple‐truncation incremental approach for four‐dimensional variational data assimilation , 1998 .
[32] G. Watts,et al. Climate Change 1995 , 1998 .
[33] Frank J. Wentz,et al. A Well Calibrated Ocean Algorithm for SSM/I , 1999 .
[34] Pedro Viterbo,et al. Impact on ECMWF forecasts of changes to the albedo of the boreal forests in the presence of snow , 1999 .
[35] J. Derber,et al. A reformulation of the background error covariance in the ECMWF global data assimilation system , 1999 .
[36] Heikki Järvinen,et al. Variational quality control , 1999 .
[37] M. Matricardi,et al. Fast radiative transfer model for simulation of infrared atmospheric sounding interferometer radiances. , 1999, Applied optics.
[38] Jean-François Mahfouf,et al. The representation of soil moisture freezing and its impact on the stable boundary layer , 1999 .
[39] D. Fahey,et al. Transport into the northern hemisphere lowermost stratosphere revealed by in situ tracer measurements , 1999 .
[40] R. Saunders,et al. A fast radiative transfer model for assimilation of satellite radiance observations-RTTOV-5 by , 2000 .
[41] J. Thepaut,et al. Dynamical impact of total‐ozone observations in a four‐dimensional variational assimilation , 2000 .
[42] Dennis L. Hartmann,et al. Modulation of Eastern North Pacific Hurricanes by the Madden-Julian Oscillation , 2000 .
[43] J. Mahfouf,et al. The ecmwf operational implementation of four‐dimensional variational assimilation. III: Experimental results and diagnostics with operational configuration , 2000 .
[44] Virginie Marécal,et al. Variational Retrieval of Temperature and Humidity Profiles from TRMM Precipitation Data , 2000 .
[45] Limin Yang,et al. Development of a global land cover characteristics database and IGBP DISCover from 1 km AVHRR data , 2000 .
[46] Jean-François Mahfouf,et al. Evaluation of the Optimum Interpolation and Nudging Techniques for Soil Moisture Analysis Using FIFE Data , 2000 .
[47] A. P. Siebesma. An Advection-Diffusion scheme for the convective boundary layer: description and 1d-results , 2000 .
[48] J. Bidlot,et al. Intercomparison of the Performance of Operational Ocean Wave Forecasting Systems with Buoy Data , 2002 .
[49] J. Mahfouf,et al. Four-Dimensional Variational Assimilation of Total Column Water Vapor in Rainy Areas , 2002 .
[50] Virginie Marécal,et al. Experiments on 4D‐Var assimilation of rainfall data using an incremental formulation , 2003 .
[51] P. Bauer,et al. SSM/I Radiance Assimilation at ECMWF , 2003 .
[52] A. Mcnally,et al. A cloud detection algorithm for high‐spectral‐resolution infrared sounders , 2003 .
[53] E. Holm,et al. Revision of the ECMWF humidity analysis: Construction of a gaussian control variable , 2003 .
[54] M. Fisher,et al. Background Error Covariance Modelling , 2003 .
[55] J. Janowiak,et al. The Version 2 Global Precipitation Climatology Project (GPCP) Monthly Precipitation Analysis (1979-Present) , 2003 .
[56] Elías Hólm,et al. Ozone assimilation in the ERA‐40 reanalysis project , 2004 .
[57] A. Beljaars,et al. A new parametrization of turbulent orographic form drag , 2004 .
[58] Matthias Drusch,et al. ECMWF's Global Snow Analysis: Assessment and Revision Based on Satellite Observations , 2004 .
[59] Jean-Noël Thépaut,et al. An improved general fast radiative transfer model for the assimilation of radiance observations , 2004 .
[60] P. Janssen. The Interaction of Ocean Waves and Wind , 2004 .
[61] M. Wheeler,et al. An All-Season Real-Time Multivariate MJO Index: Development of an Index for Monitoring and Prediction , 2004 .
[62] Lars Isaksen,et al. Impact of ERS scatterometer winds in ECMWF's assimilation system , 2004 .
[63] Yannick Trémolet,et al. Diagnostics of linear and incremental approximations in 4D‐Var , 2004 .
[64] A. Betts,et al. The simulation of the diurnal cycle of convective precipitation over land in a global model , 2004 .
[65] M. Fisher. Generalized Frames on the Sphere, with Application to Background Error Covariance Modelling , 2004 .
[66] Thomas Jung,et al. Reanalysis and reforecast of three major European storms of the twentieth century using the ECMWF forecasting system. Part I: Analyses and deterministic forecasts , 2004 .
[67] Philippe Keckhut,et al. The SPARC Intercomparison of Middle-Atmosphere Climatologies , 2004, Journal of Climate.
[68] Frederic Vitart,et al. Monthly Forecasting at ECMWF , 2004 .
[69] Jean-Noël Thépaut,et al. Impact of MODIS polar winds in ECMWF's 4DVAR data assimilation system , 2004 .
[70] S. Caires,et al. Climatology, variability and extrema of ocean waves: the Web‐based KNMI/ERA‐40 wave atlas , 2005 .
[71] A. Sterl,et al. The ERA‐40 re‐analysis , 2005 .
[72] Jean-Jacques Morcrette,et al. Influence of aerosol climatology on forecasts of the African Easterly Jet , 2005 .
[73] D. P. DEE,et al. Bias and data assimilation , 2005 .
[74] Saleh Abdalla,et al. Progress in ocean wave forecasting at ECMWF , 2005 .
[75] J. Thepaut,et al. Assimilation and Modeling of the Atmospheric Hydrological Cycle in the ECMWF Forecasting System , 2005 .
[76] Thomas Jung,et al. Reanalysis and reforecast of three major European storms of the twentieth century using the ECMWF forecasting system. Part II: Ensemble forecasts , 2005 .
[77] J. Thepaut,et al. The assimilation of AIRS radiance data at ECMWF , 2006 .
[78] Jean-Noël Thépaut,et al. Assimilation experiments with CHAMP GPS radio occultation measurements , 2006 .
[79] Guang-Zhong Yang. Conclusions and Future Outlook , 2006 .
[80] M. Chipperfield,et al. New version of the TOMCAT/SLIMCAT off‐line chemical transport model: Intercomparison of stratospheric tracer experiments , 2006 .
[81] Developments in model physics after ERA-40 , 2006 .
[82] Peter Bauer,et al. Implementation of 1D+4D‐Var assimilation of precipitation‐affected microwave radiances at ECMWF. II: 4D‐Var , 2006 .
[83] A. Simmons,et al. The ECMWF operational implementation of four‐dimensional variational assimilation. I: Experimental results with simplified physics , 2007 .
[84] Martyn P. Chipperfield,et al. Mean age of air and transport in a CTM: Comparison of different ECMWF analyses , 2007 .
[85] C. Donlon,et al. OSTIA : An operational, high resolution, real time, global sea surface temperature analysis system , 2007, OCEANS 2007 - Europe.
[86] Klaus Gierens,et al. Ice supersaturation in the ECMWF integrated forecast system , 2007 .
[87] Four‐dimensional variational assimilation of special sensor microwave/imager total column water vapour in the ECMWF model , 2007 .
[88] Height-Resolved Ozone information in the Troposphere and lower stratosphere from Global Ozone Monitoring Experiment (GOME) , 2007 .
[89] Stephen A. McGuire,et al. Introductory Statistics , 2007, Technometrics.
[90] S. Kobayashi,et al. The JRA-25 Reanalysis , 2007 .
[91] Daniel Cariolle,et al. A revised linear ozone photochemistry parameterization for use in transport and general circulation models: multi-annual simulations , 2007 .
[92] Frederic Vitart,et al. Monthly Forecast of the Madden–Julian Oscillation Using a Coupled GCM , 2007 .
[93] Christophe Cassou,et al. Intraseasonal interaction between the Madden–Julian Oscillation and the North Atlantic Oscillation , 2008, Nature.
[94] David L. T. Anderson,et al. The ECMWF Ocean Analysis System: ORA-S3 , 2008 .
[95] Peter Bauer,et al. Lessons learnt from the operational 1D + 4D‐Var assimilation of rain‐ and cloud‐affected SSM/I observations at ECMWF , 2008 .
[96] R. Stolarski,et al. Comparison of lower stratospheric tropical mean vertical velocities , 2008 .
[97] Thomas Jung,et al. Understanding the local and global impacts of model physics changes: an aerosol example , 2008 .
[98] Leopold Haimberger,et al. Toward Elimination of the Warm Bias in Historic Radiosonde Temperature Records—Some New Results from a Comprehensive Intercomparison of Upper-Air Data , 2008 .
[99] Peter A. E. M. Janssen,et al. Progress in ocean wave forecasting , 2008, J. Comput. Phys..
[100] D. Dee,et al. Evolution of reanalysis at ECMWF , 2008 .
[102] P. Jones,et al. The Twentieth Century Reanalysis Project , 2009 .
[103] Earth's Global Energy Budget , 2009 .
[104] Jean-Noël Thépaut,et al. A Comparison of Variational and Ensemble-Based Data Assimilation Systems for Reanalysis of Sparse Observations , 2009 .
[105] D. Dee,et al. Variational bias correction of satellite radiance data in the ERA‐Interim reanalysis , 2009 .
[106] D. Dee,et al. Toward a consistent reanalysis of the upper stratosphere based on radiance measurements from SSU and AMSU‐A , 2009 .
[107] Paul Berrisford,et al. The ERA-Interim Archive , 2009 .
[108] Dick Dee,et al. Low‐frequency variations in surface atmospheric humidity, temperature, and precipitation: Inferences from reanalyses and monthly gridded observational data sets , 2010 .
[109] Russell S. Vose,et al. Reanalyses Suitable for Characterizing Long-Term Trends , 2010 .
[110] Paul Poli,et al. Assimilation of Global Positioning System radio occultation data in the ECMWF ERA–Interim reanalysis , 2010 .
[111] Uang,et al. The NCEP Climate Forecast System Reanalysis , 2010 .
[112] Molly O. Baringer,et al. State of the Climate in 2009 , 2010 .
[113] R. Dragani. ERA report series 3 On the quality of the ERA-Interim ozone reanalyses Part II Comparisons with satellite data , 2010 .
[114] Andrew J. Monaghan,et al. An Assessment of Precipitation Changes over Antarctica and the Southern Ocean since 1989 in Contemporary Global Reanalyses , 2011 .
[115] M. Köhler,et al. Unified treatment of dry convective and stratocumulus‐topped boundary layers in the ECMWF model , 2011 .
[116] S. Schubert,et al. MERRA: NASA’s Modern-Era Retrospective Analysis for Research and Applications , 2011 .
[117] Paul Poli,et al. Atmospheric conservation properties in ERA‐Interim , 2011 .
[118] Rossana Dragani,et al. On the quality of the ERA‐Interim ozone reanalyses: comparisons with satellite data , 2011 .
[119] D. Dee,et al. Comments on “Reanalyses Suitable for Characterizing Long-Term Trends” , 2011 .
[120] S. Wofsy,et al. Mean Ages of Stratospheric Air Derived from in Situ Observations of Co2, Ch4, and N2o , 2013 .
[121] P. Bauer,et al. Implementation of 1D+4D‐Var assimilation of precipitation‐affected microwave radiances at ECMWF. I: 1D‐Var , 2022 .