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Bauer, P., P. Lopez, A. Benedetti, D. Salmond, and E. Moreau (2006), Implementation of 1D+4D-Var Assimilation of Precipitation Affected Microwave Radiances at ECMWF, Part I: 1D-Var, European Centre for Medium-Range Weather Forecasts ECMWF,Technical Memorandum.
Bauer, P., P. Lopez, D. Salmond, A. Benedetti, S. Saarinen, and M. Bonazzola (2006), Implementation of 1D+4D-Var Assimilation of Precipitation Affected Microwave Radiances at ECMWF, Part II: 4D-Var, European Centre for Medium-Range Weather Forecasts ECMWF,Technical Memorandum.
Bauer, P., E. Moreau, F. Chevallier, and U. O'Keeffe (2006), Multiple-scattering microwave radiative transfer for data assimilation applications, SAF research report ,Technical Memorandum.
Bauer, P., A. J. Geer, P. Lopez, and D. Salmond (2010), Direct 4D-Var assimilation of all-sky radiances. Part I: Implementation, Q. J. R. Meteorol. Soc., 136(652), 1868–1885, doi:10.1002/qj.659.
Chevallier, F., S. Di Michele, and A. P. McNally (2006), Diverse profile datasets from the ECMWF 91-level short-range forecasts, NWP SAF Satellite Application Facility for Numerical Weather Prediction, Document No. NWPSAF-EC-TR-010, Version 1.0.
Comstock, J. M. and C. Jakob (2004), Evaluation of tropical cirrus cloud properties derived from ECMWF model output and ground based measurements over Nauru Island, Geophys. Res. Lett., 31.
Di Michele, S. and P. Bauer (2005), Passive Microwave Radiometer Channel Selection Based on Cloud and Precipitation Information Content Estimation, European Centre for Medium-Range Weather Forecasts ECMWF, Technical Memorandum.
Jakob, C. and S. A. Klein (1999), The role of vertically varying cloud fraction in the parametrization of microphysical processes in the ECMWF model, Q. J. R. Meteorol. Soc., 125(555), 941–965, doi:10.1002/qj.49712555510.
Li, J.-L. F., D. Waliser, C. Woods, J. Teixeira, J. Bacmeister, J. Chern, B.-W. Shen, A. Tompkins, W.-K. Tao, and M. Köhler (2008), Comparisons of satellites liquid water estimates to ECMWF and GMAO analyses, 20th century IPCC AR4 climate simulations, and GCM simulations, Geophys. Res. Lett., 35, L19710, doi:10.1029/2008GL035427.
Morcrette, J.-J., E. J. Mlawer, M. J. Iaconon, and S. A. Clough (2001), Impact of the radiation-transfer scheme RRTM in the ECMWF forecasting system, European Centre for Medium-Range Weather Forecasts.
Morcrette, J.-J., S. A. Clough, E. J. Mlawer, and M. J. Iacono (1998), Impact of a validated radiative transfer scheme, RRTM, on the ECMWF model climate and 10-day forecasts, European Centre for Medium-Range Weather Forecasts.
Newman, M., P. D. Sardeshmukh, and J. W. Bergman (2000), An Assessment of the NCEP, NASA, and ECMWF Reanalyses over the Tropical West Pacific Warm Pool, Bull. Amer. Met. Soc., 81(1), 41–48.
Ovarlez, J., P. van Velthoven, G. Sachse, S. Vay, H. Schlager, and H. Ovarlezg (2000), Compariosn of water vapor measurements from POLINAT 2 with ECMWF analyses in high-humidity conditions, J. Geophys. Res., 105(D3), 3737–3744.
Pawson, S. and M. Fiorino (1998), A comparison of reanalyses in the tropical stratosphere. Part 1: thermal structure and the annual cycle, Climate Dynamics, 14, 631–644.
Saunders, R., M. Matricardi, and P. Brunel (1999), A fast radiative transfer model for assimilation of satellite radiance observation - RTTOV-5, European Centre for Medium-Range Weather Forecasts ECMWF, Technical Memorandum.
Simmons, A. J., A. Untch, C. Jakob, P. Kallberg, and P. Unden (1999), Stratospheric water vapour and tropical tropopause temperatures in ECMWF analyses and multi-year simulations, Q. J. R. Meteorol. Soc., 125, 353–386.
Slingo, A., J. A. Pamment, R. P. Allan, and P. S. Wilson (2000), Water Vapor Feedbacks in the ECMWF Reanalyses and Hadley Centre Climate Model, J. Climate, 13, 3080–3098.
Tompkins, A. M., K. Gierens, and G. Rädel (2007), Ice supersaturation in the ECMWF integrated forecast system, European Centre for Medium-Range Weather Forecasts ECMWF,Technical Memorandum, doi:10.1002/qj.14.
Trigo, I. F. and P. Viterbo (2004), Clear-Sky Window Channel Radiances: A Comparison between Observation and the ECMWF Model, J. Appl. Meteorol., 42, 1463–1479.