Centre d'Enseignement et de Recherche en Environnement Atmosphérique

Laboratoire Commun

École des Ponts ParisTech - EDF R&D

EDF

Publications année 2012



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Publications dans des revues avec comités de lecture

[1] BOCQUET, M. Parameter field estimation for atmospheric dispersion: Application to the Chernobyl accident using 4D-Var. Q. J. Royal Meteor. Soc., vol. 138, 664-681 (2012).     
[2] SARTELET, K., F. COUVIDAT, Y. ROUSTAN, C. SEIGNEUR. Impact of biogenic emissions on air quality over Europe and North America. Atmos. Environ., vol. 53, 131-141 (2012).     
[3] CHAZETTE, P., M. BOCQUET, P. ROYER, V. WINIAREK, J.-C. RAUT, P. LABAZUY, M. GOUHIER, M. LARDIER, J.-P. CARIOU. Eyjafjalljökull ash concentrations derived from both Lidar and modeling. J. Geophys. Res., vol. 117, doi:10.1029/2011JD15755 (2012).     
[4] WAKED, A., C. AFIF, C. SEIGNEUR. An atmospheric emission inventory of anthropogenic and biogenic sources for Lebanon. Atmos. Environ., vol. 50, 88-96 (2012).     
[5] WU, L., F.-X. LE DIMET, P. DE REFFYE, B.-G. HU, P.-H. COURNEDE, M.-Z. KANG. An optimal control methodology for plant growth - Case study of a water supply problem of sunflower. Math. Comp. Simul., vol. 82, 900-923, doi:10.1016/j.matcom.2011.12.007 (2011).     
[6] CHEVALLIER, F., T. WANG, P. CIAIS, F. MAIGNAN, M. BOCQUET, A. ARAIN, A. CESCATTI, J.-Q. CHEN, H. DOLMAN, B.E. LAW, H.A. MARGOLIS, L. MONTAGNI, E.J. MOORS. What eddy-covariance flux measurements tell us about prior errors in CO2-flux inversion schemes. Global Biogeochem. Cycles., vol. 26, GB1021, doi:10.1029/2010GB003974 (2012).     
[7] QU, Y., M. MILLIEZ, L. MUSSON-GENON, B. CARISSIMO. Numerical study of the thermal effects of buildings on low-speed airflow taking into account 3D atmospheric radiation in urban canopy. J. Wind Eng. Ind. Aerodyn., 104-106, 474-483 (2012).     
[8] WINIAREK, V., M. BOCQUET, O. SAUNIER, A. MATHIEU. Estimation of errors in the inverse modeling of accidental release of atmospheric pollutant: Application to the reconstruction of the cesium-137 and iodine-131 source terms from the Fukushima Daiichi power plant. J. Geophys. Res., 117, D05122, doi:10.1029/2011JD016932; 117, D18118, doi:10.1029/2012JD018107 (2012).     
[9] PUGH, T.A.M., M. CAIN, J. METHVEN, O. WILD, S.R. ARNOLD, E. REAL, K.S. LAW, K.M. EMMERSON, S.M. OWEN, J.A. PYLE, C.N. HEWITT, A.R. MACKENZIE. A Lagrangian model of air-mass photochemistry and mixing using a trajectory ensemble: the Cambridge Tropospheric Trajectory model of Chemistry And Transport (CiTTyCAT) version 4.2. Geosci. Model Dev., vol. 5, 193-221 (2012).     
[10] SOLAZZO E., BIANCONI R., VAUTARD R., APPEL K.W., MORAN M.D., HOGREFE C., BESSAGNET B., BRANDT J., CHRISTENSEN J.H., CHEMEL C., COLL I., DENIER VAN DER GON H., FERREIRA J., FORKEL R., FRANCIS X.V., GRELL G., GROSSI P., HANSEN A.B., JERICEVIC A., KRALJEVIC L., MIRANDA A.I., NOPMONGCOL U., PIROVANO G., PRANK M., RICCIO A., SARTELET K.N., SCHAAP M., SILVER J.D., SOKHI R.S., VIRAS J., WERHAHN J., WOLKE R., YARWOOD G., ZHANG J., RAO S.T., GALMARINI S. Model evaluation and ensemble modelling of surface-level ozone in Europe and North America in the context of AQMEII. Atmos. Environ., vol. 53, 60-74, doi:10.1016/j.atmosenv.2012.01.003 (2012).     
[11] SOLAZZO, E., R. BIANCONI, G. PIROVANO, M. VOLK, R. VAUTARD, K.W. APPEL, B. BESSAGNET, J. BRANDT, J.H. CHRISTIANSEN, C. CHEMEL, I. COLL, J. FERREIRA, R. FORKEL, X.V. FRANCIS, G. GRELL, P. GROSSI, A. HANSEN, A.I. MIRANDA, M.D. MORAN, U. NOPMONGCOL, M. PRANK, K.N. SARTELET, M. SCHAAP, J.D. SILVER, R.S. SOKHI, J. VIRA, J. WERHAN, R. WOLKE, G. YARWOOD, J. ZHANG. S.T. RAO and S. GALMARINI. Operational model evaluation for particulate matter in Europe and North America in the context of the AQMEII project. Atmos. Environ., vol. 53, 75-92 (2012).     
[12] KOOHKAN, M.R., M. BOCQUET, L. WU, M. KRYSTA. Potential of the International Monitoring System radionuclide network for inverse modelling. Atmos. Env., vol. 54, 557-567 (2012).     
[13] COUVIDAT, F., É. DEBRY, K. SARTELET, C. SEIGNEUR. A hydrophilic/hydrophobic organic (H2O) model: Development, evaluation and sensitivity analysis. J. Geophys. Res., vol.117, D10304, doi:10.1029/2011JD017214 (2012).     
[14] ZHANG, Y., M. BOCQUET, V. MALLET, C. SEIGNEUR, A. BAKLANOV. Real-time air quality forecasting, Part I: History, techniques, and current status. Atmos. Env., vol. 60, 632-655 (2012).     
[15] ZHANG, Y., M. BOCQUET, V. MALLET, C. SEIGNEUR, A. BAKLANOV. Real-time air quality forecasting, Part II: State of the science, current research needs, and future prospects. Atmos. Env., vol. 60, 656-676 (2012).     
[16] BOCQUET, M., P. SAKOV. Combining inflation-free and iterative ensemble Kalman filters for strongly nonlinear systems. Nonlin. Processes Geophys., vol. 19, 383-399 (2012).     
[17] KOOHKAN, M.R., M. BOCQUET. Accounting for representativeness errors in the inversion of atmospheric constituent emissions: Application to the retrieval of regional carbon monoxide fluxes. Tellus B, vol. 64, 19047-19063 (2012).     
[18] LAUVAUX, T., A.E. SCHUH, M. BOCQUET, L. WU, S. RICHARDSON, N. MILES, K.J. DAVIES. Network design for mesoscale inversions of CO2 sources and sinks. Tellus B, vol. 64, 17980-17992 (2012).     
[19] WAKED, A., C. AFIF. Emissions of air pollutant from road transport in Lebanon and other countries in the Middle East region. Atmos. Environ., vol. 61, 446-452 (2012).     
[20] Drevet, J., L. Musson-Genon. Impact sur la qualité de l’air de deux centrales électriques à l’aide d’une modélisation sous-maille. Pollution Atmosphérique vol. 215, 285-295 (2012).     
[21] Estournel, C., E. Bosc, M. Bocquet, C. Ulses, P. Marsaleix, V. Winiarek, I. Osvath, C. Nguyen, T. Duhaut, F. Lyard, H. Michaud, F. Auclair. Assessment of the amount of Cesium-137 released into the Pacific Ocean after the Fukushima accident and analysis of its dispersion in Japanese coastal waters J. Geophys. Res. Oceans 117, C11014, doi:10.1029/2012JC007933 (2012).