Alumni Bibliographies
Publications by Anthony D. Del Genio
This citation list includes papers published while the author was on staff at the NASA Goddard Institute for Space Studies. It may also include some publications before or after that period if another GISS researcher was a co-author.
Submitted / In Review
ROCKE-3D 2.0: An updated general circulation model for simulating the climates of rocky planets. Geosci. Model Dev., submitted.
, , , , T.L. Clune, , A.D. Del Genio, , , , , , , , , and E.T. Wolf, 2025:2024
A study of Jupiter's UV Great Dark Spot and tropopause to stratosphere winds in the high northern latitudes as seen by Cassini imaging. Icarus, 410, 115913, doi:10.1016/j.icarus.2023.115913.
, R.A. West, , and J.A. Sinclair, 2024:Observational constraint on a feedback from supercooled clouds reduces projected warming uncertainty. Commun. Earth Environ., 5, 181, doi:10.1038/s43247-024-01339-1.
, , , I. Silber, , M. Zelinka, H. Chepfer, T. Khadir, and R. Roehrig, 2024:2022
Convection as a regulator of the Earth's climate. In Studies of Cloud, Convection and Precipitation Processes Using Satellite Observations. Z.J. Luo, G. Tselioudis, and W.B. Rossow, Eds., Lectures in Climate Change, vol. 3, World Scientific, pp. 3-19, doi:10.1142/9789811256912_0001.
, 2022:A simple model for tropical convective cloud shield area growth and decay rates informed by geostationary IR, GPM, and Aqua/AIRS satellite data. J. Geophys. Res. Atmos., 127, no. 10, e2021JD035599, doi:10.1029/2021JD035599.
, R. Roca, T. Fiolleau, , and , 2022:Future climate change under SSP emission scenarios with GISS-E2.1. J. Adv. Model. Earth Syst., 14, no. 7, e2021MS002871, doi:10.1029/2021MS002871.
, , , , , , , , , , , , R. Bleck, , , , T.L. Clune, , C.A. Cruz, , , , , D. Kim, , , , , , , S. McDermid, , L.T. Murray, , , C.P. García-Pando, , , , D.T. Shindell, S. Sun, , , , , and , 2022:Russotto, R.D., J.D.O. Strong, S.J. Camargo, A.H. Sobel, Improved representation of tropical cyclones in the NASA GISS-E3 GCM. J. Adv. Model. Earth Syst., 14, no. 1, e2021MS002601, doi:10.1029/2021MS002601.
, , , Y. Moon, and D. Kim, 2022:2021
Tropopause and lower stratosphere winds and eddy fluxes on Saturn as seen by Cassini imaging. Icarus, 354, 114095, doi:10.1016/j.icarus.2020.114095.
, and , 2021:Observational constraint on cloud feedbacks suggests moderate climate sensitivity. Nat. Clim. Change, 11, no. 3, 213-218, doi:10.1038/s41558-020-00970-y.
, and , 2021:Effects of spin-orbit resonances and tidal heating on the inner edge of the Habitable Zone. Astrophys. J., 921, no. 1, 25, doi:10.3847/1538-4357/ac135c.
, J. Haqq-Misra, E.T. Wolf, , R. Barnes, , and , 2021:Guzewich, S.D., 3D simulations of the early Martian hydrological cycle mediated by a H2-CO2 greenhouse. J. Geophys. Res. Planets, 126, no. 7, e2021JE006825, doi:10.1029/2021JE006825.
, , E.T. Wolf, , R. Wordsworth, and , 2021:CMIP6 historical simulations (1850-2014) with GISS-E2.1. J. Adv. Model. Earth Syst., 13, no. 1, e2019MS002034, doi:10.1029/2019MS002034.
, , , , , , , , , , R. Bleck, , , , T.L. Clune, , C.A. Cruz, , , , , D. Kim, , , , , J. Marshall, , S. McDermid, , L.T. Murray, , , C. Pérez García-Pando, , , , , D.T. Shindell, S. Sun, , , , , , and , 2021:2020
Airapetian, V.S., R. Barnes, O. Cohen, G.A. Collinson, W.C. Danchi, C.F. Dong, Impact of space weather on climate and habitability of terrestrial type exoplanets. Int. J. Astrobiol., 19, no. 2, 136-194, doi:10.1017/S1473550419000132.
, K. France, K. Garcia-Sage, A. Glocer, N. Gopalswamy, J.L. Grenfell, G. Gronoff, M. Güdel, K. Herbst, W.G. Henning, C.H. Jackman, M. Jin, C.P. Johnstone, L. Kaltenegger, C.D. Kay, K. Kobayashi, W. Kuang, G. Li, B.J. Lynch, T. Lüftinger, J.G. Luhmann, H. Maehara, M.G. Mlynczak, Y. Notsu, R.M. Ramirez, S. Rugheimer, M. Scheucher, J.E. Schlieder, K. Shibata, C. Sousa-Silva, V. Stamenković, R.J. Strangeway, A.V. Usmanov, P. Vergados, O.P. Verkhoglyadova, A.A. Vidotto, M. Voytek, , G.P. Zank, and Y. Yamashiki, 2020:Camargo, S.J., C.F. Giulivi, A.H. Sobel, A.A. Wing, D. Kim, Y. Moon, J.D.O. Strong, Characteristics of model tropical cyclone climatology and the large-scale environment. J. Climate, 33, no. 11, 4463-4487, doi:10.1175/JCLI-D-19-0500.1.
, , H. Murakami, K.A. Reed, E. Scoccimarro, G.A. Vecchi, M.F. Wehner, C. Zarzycki, and M. Zhao, 2020:A second-order closure turbulence model: New heat flux equations and no critical Richardson number. J. Atmos. Sci., 77, no. 8, 2743-2759, doi:10.1175/JAS-D-19-0240.1.
, , , , , , , , , and , 2020:The inner Solar System's habitability through time. In Planetary Astrobiology. V. Meadows, G. Arney, D. DesMarais, and B. Schmidt, Eds., Space Science Series, University of Arizona Press, pp. 419-447.
, D. Brain, L. Noack, and L. Schaefer, 2020:Fauchez, T., M. Turbet, E.T. Wolf, I. Boutle, TRAPPIST-1 Habitable Atmosphere Intercomparison (THAI). Motivations and protocol. Geosci. Model Dev., 13, 707-716, doi:10.5194/gmd-13-707-2020.
, , N.J. Mayne, , R.K. Kopparapu, J. Yang, F. Forget, A. Mandell, and S.D. Domagal Goldman, 2020:GISS-E2.1: Configurations and climatology. J. Adv. Model. Earth Syst., 12, no. 8, e2019MS002025, doi:10.1029/2019MS002025.
, , , , , , , , , R. Bleck, , , , T.L. Clune, , C.A. Cruz, , , , , D. Kim, , , , , J. Marshall, , S. McDermid, , , L.T. Murray, , , C. Pérez García-Pando, , , , , D.T. Shindell, S. Sun, , , , , , and , 2020:Ma, C.-G., E. Chang, S. Wong, M. Zhang, and Impacts of storm track variations on winter time extreme precipitation and moisture budgets over the Ohio Valley and Northwestern U.S. J. Climate, 33, no. 13, 5371-5391, doi:10.1175/JCLI-D-19-0543.1.
, 2020:Venusian habitable climate scenarios: Modeling Venus through time and applications to slowly rotating Venus-like exoplanets. J. Geophys. Res. Planets, 125, no. 5, e2019JE006276, doi:10.1029/2019JE006276.
, and , 2020:2019
The Cumulus And Stratocumulus CloudSat-CALIPSO Dataset (CASCCAD). Earth Syst. Sci. Data, 11, 1745-1764, doi:10.5194/essd-11-1745-2019.
, , and H. Chepfer, 2019:Evaluating models' response of tropical low clouds to SST forcings using CALIPSO observations. Atmos. Chem. Phys., 19, 2813-2832, doi:10.5194/acp-19-2813-2019.
, , , , , , , and , 2019:Enhanced habitability on high obliquity bodies near the outer edge of the Habitable Zone of Sun-like stars. Astrophys. J., 884, no. 2, 138, doi:10.3847/1538-4357/ab4131.
, , and , 2019:Albedos, equilibrium temperatures, and surface temperatures of habitable planets. Astrophys. J., 884, no. 1, 75, doi:10.3847/1538-4357/ab3be8.
, , , , , Y. Fujii, , , , S.D. Guzewich, and , 2019:Habitable climate scenarios for Proxima Centauri b with a dynamic ocean. Astrobiology, 19, no. 1, 99-125, doi:10.1089/ast.2017.1760.
, , , , , , and T.L. Clune, 2019:Climates of warm Earth-like planets III: Fractional habitability from a water cycle perspective. Astrophys. J., 887, no. 2, 197, doi:10.3847/1538-4357/ab57fd.
, , , , , and , 2019:Anthony Del Genio: Climates of planets near and far. Persp. Earth Space Sci., 1, no. 1, e2019CN000109, doi:10.1029/2019CN000109.
, 2019:Jansen, T., C. Scharf, Climates of warm Earth-like planets II: Rotational 'Goldilocks' zones for fractional habitability and silicate weathering. Astrophys. J., 875, no. 2, 79, doi:10.3847/1538-4357/ab113d.
, and , 2019:Cloud scattering impact on thermal radiative transfer and global longwave radiation. J. Quant. Spectrosc. Radiat. Transfer, 239, 106669, doi:10.1016/j.jqsrt.2019.106669.
, , , , and , 2019:Rio, C., Ongoing breakthroughs in convective parameterization. Curr. Clim. Change Rep., 5, no. 2, 95-111, doi:10.1007/s40641-019-00127-w.
, and F. Hourdin, 2019:Sánchez-Lavega, A., L.A. Sromovsky, A.P. Showman, Gas giants. In Zonal Jets: Phenomenology, Genesis, and Physics. B. Galperin and P.L. Read, Eds., Cambridge University Press, pp. 72-103, doi:10.1017/9781107358225.005.
, R.M.B. Young, R. Hueso, E. Garcia-Melendo, Y. Kaspi, G.S. Orton, N. Barrado-Izagirre, D.S. Choi, and , 2019:Tapiador, F.J., R. Roca, Is precipitation a good metric for model performance? Bull. Amer. Meteorol. Soc., 100, no. 2, 223-233, doi:10.1175/BAMS-D-17-0218.1.
, B. Dewitte, W. Petersen, and F. Zhang, 2019:2018
Catling, D.C., J. Krissansen-Totton, Exoplanet biosignatures: A framework for their assessment. Astrobiology, 19, no. 6, 709-738, doi:10.1089/ast.2017.1737.
, D. Crisp, T.D. Robinson, S. DasSarma, A. Rushby, , W. Bains, and S. Domagal-Goldman, 2018:Constraining the models' response of tropical clouds to SST forcings using CALIPSO observations. In Remote Sensing and Modeling of the Atmosphere, Oceans, and Interactions VII, 24-26 September 2018, Honolulu, Hawaii. G. Liu and Z.S. Haddad, Eds., Proc. SPIE, vol. 10782, p. 107820A, doi:10.1117/12.2324800.
, , and , 2018:The role of clouds in climate. In Our Warming Planet: Topics in Climate Dynamics. C. Rosenzweig, D. Rind, A. Lacis, and D. Manley, Eds., Lectures in Climate Change, vol. 1, World Scientific, pp. 103-130, doi:10.1142/9789813148796_0005.
, 2018:Turtle, E.P., J.E. Perry, Titan's meteorology over the Cassini mission: Evidence for extensive subsurface methane reservoirs. Geophys. Res. Lett., 45, no. 11, 5320-5328, doi:10.1029/2018GL078170.
, , S. Rodriguez, S. Le Mouélic, C.J. Sotin, J.M. Lora, S. Faulk, P. Corlies, J. Kelland, S.M. MacKenzie, R.A. West, A.S. McEwen, J.I. Lunine, J.E. Pitesky, T.L. Ray, and M. Rou, 2018:Climates of warm Earth-like planets I: 3-D model simulations. Astrophys. J. Supp. Ser., 239, no. 2, 24, doi:10.3847/1538-4365/aae9e1.
, , , T.L. Clune, , and , 2018:2017
Adames, Á.F., D. Kim, A.H. Sobel, Characterization of moist processes associated with changes in the propagation of the MJO with increasing CO2. J. Adv. Model. Earth Syst., 9, no. 8, 2946-2967, doi:10.1002/2017MS001040.
, and , 2017:Adames, A.F., D. Kim, A.H. Sobel, Changes in the structure and propagation of the MJO with increasing CO2. J. Adv. Model. Earth Syst., 9, no. 2, 1251-1268, doi:10.1002/2017MS000913.
, and , 2017:An improved convective ice parameterization for the NASA GISS Global Climate Model and impacts on cloud ice simulation. J. Climate, 30, no. 1, 317-336, doi:10.1175/JCLI-D-16-0346.1.
, , J. Jiang, and , 2017:NIR-driven moist upper atmospheres of synchronously rotating temperate terrestrial exoplanets. Astrophys. J., 848, no. 2, 100, doi:10.3847/1538-4357/aa8955.
, , and , 2017:Interactive nature of climate change and aerosol forcing. J. Geophys. Res. Atmos., 122, no. 6, 3457-3480, doi:10.1002/2016JD025809.
, , , , , and , 2017:Resolving orbital and climate keys of Earth and extraterrestrial environments with dynamics 1.0: A general circulation model for simulating the climates of rocky planets. Astrophys. J. Supp. Ser., 231, no. 1, 12, doi:10.3847/1538-4365/aa7a06.
, , , , T. Clune, , , , , , and , 2017:2016
Camargo, S.J., A.H. Sobel, Tropical cyclones in the GISS ModelE2. Tellus A, 68, 31494, doi:10.3402/tellusa.v68.31494.
, , , Y. Lu, D.A. Shaevitz, and N. Henderson, 2016:An objective classification of Saturn cloud features from Cassini ISS images. Icarus, 271, 222-236, doi:10.1016/j.icarus.2016.02.011.
, and , 2016:Jensen, M.P., W.A. Petersen, A. Bansemer, N. Bharadwaj, L.D. Carey, D.J. Cecil, S.M. Collis, The Midlatitude Continental Convective Clouds Experiment (MC3E). Bull. Amer. Meteorol. Soc., 97, no. 9, 1667-1686, doi:10.1175/BAMS-D-14-00228.1.
, B. Dolan, J. Gerlach, S.E. Giangrande, A. Heymsfield, G. Heymsfield, P. Kollias, T.J. Lang, S.W. Nesbitt, A. Neumann, M. Poellot, S.A. Rutledge, M. Schwaller, A. Tokay, C.R. Williams, D.B. Wolff, S. Xie, and E.J. Zipser, 2016:The relationship between boundary layer stability and cloud cover in the post-cold frontal region. J. Climate, 29, no. 22, 8129-8149, doi:10.1175/JCLI-D-15-0700.1.
, , and , 2016:Randall, D.A., The impact of ARM on climate modeling. In The Atmospheric Radiation Measurement Program: The First 20 Years. D.D. Turner and R.G. Ellingson, Eds., AMS Meteorological Monograph 57, American Meteorological Society, pp. 26.1-26.16, doi:10.1175/AMSMONOGRAPHS-D-15-0050.1.
, L.J. Donner, W.D. Collins, and S.A. Klein, 2016:Was Venus the first habitable world of our solar system? Geophys. Res. Lett., 43, no. 16, 8376-8383, doi:10.1002/2016GL069790.
, , , , D.H. Grinspoon, , , and T. Clune, 2016:West, R.A., Cassini Imaging Science Subsystem observations of Titan's south polar cloud. Icarus, 270, 399-408, doi:10.1016/j.icarus.2014.11.038.
, , D. Toledo, P. Lavvas, P. Rannou, E.P. Turtle, and J. Perry, 2016:Wong, S., Responses of tropical ocean clouds to the large-scale dynamical circulation: Atmospheric water budget-related phase space and dynamical regimes. J. Climate, 29, no. 19, 7127-7143, doi:10.1175/JCLI-D-15-0712.1.
, T. Wang, B.H. Kahn, E.J. Fetzer, and T.S. L'Écuyer, 2016:Wood, R., M.P. Jensen, J. Wang, C.S. Bretherton, S.M. Burrows, Planning the next decade of coordinated research to better understand and simulate marine low clouds. Bull. Amer. Meteorol. Soc., 97, no. 9, 1699-1702, doi:10.1175/BAMS-D-16-0160.1.
, , S.J. Ghan, V.P. Ghate, P. Kollias, S.K. Kruger, R.L. McGraw, M.A. Miller, D. Painemal, L.M. Russell, S.E. Yuter, and P. Zuidema, 2016:Zheng, Y., K. Alpaty, J.A. Herwehe, Improving high-resolution weather forecasts using the Weather Research and Forecasting (WRF) model with an updated Kain-Fritsch scheme. Mon. Weather Rev., 144, no. 3, 833-860, doi:10.1175/MWR-D-15-0005.1.
, and D. Niyogi, 2016:2015
Cloud-radiative driving of the Madden-Julian Oscillation as seen by the A-Train. J. Geophys. Res. Atmos., 120, no. 11, 5344-5356, doi:10.1002/2015JD023278.
, and , 2015:Constraints on cumulus parameterization from simulations of observed MJO events. J. Climate, 28, no. 16, 6419-6442, doi:10.1175/JCLI-D-14-00832.1.
, , , , , and D. Kim, 2015:Sensitivity of simulated tropospheric CO to subgrid physics parameterization: A case study of Indonesian biomass burning emissions in 2006. J. Geophys. Res. Atmos., 120, no. 22, 11743-11759, doi:10.1002/2015JD023402.
, M. Luo, D. Kim, , A. Voulgarakis, and J. Worden, 2015:Jiang, J.H., H. Su, C. Zhai, T.J. Shen, T. Wu, J. Zhang, J.N.S. Cole, K. von Salzen, L.J. Donner, C. Seman, Evaluating the diurnal cycle of upper-tropospheric ice clouds in climate models using SMILES observations. J. Atmos. Sci., 72, no. 3, 1022-1044, doi:10.1175/JAS-D-14-0124.1.
, , J.-L. Dufresne, M. Watanabe, C. Morcrette, T. Koshiro, H. Kawai, A. Gettelman, L. Millán, W.G. Read, N.J. Livesey, Y. Kasai, and M. Shiotani, 2015:Kim, D., M.-S. Ahn, I.-S. Kang, and Role of longwave cloud-radiation feedback in the simulation of the Madden-Julian Oscillation. J. Climate, 28, no. 17, 6979-6994, doi:10.1175/JCLI-D-14-00767.1.
, 2015:Future climate change under RCP emission scenarios with GISS ModelE2. J. Adv. Model. Earth Syst., 7, no. 1, 244-267, doi:10.1002/2014MS000403.
, , , , , , , , , , , , , T.L. Clune, , , , , , , , , , , S. Menon, , , , , , , , S. Sun, , N. Unger, , , and J. Zhang, 2015:Stanfield, R.E., X. Dong, B. Xi, Assessment of NASA GISS CMIP5 and Post-CMIP5 simulated clouds and TOA radiation budgets using satellite observations. Part II: TOA radiation budget and CREs. J. Climate, 28, no. 5, 1842-1864, doi:10.1175/JCLI-D-14-00249.1.
, P. Minnis, D. Doelling, and N. Loeb, 2015:2014
CMIP5 historical simulations (1850-2012) with GISS ModelE2. J. Adv. Model. Earth Syst., 6, no. 2, 441-477, doi:10.1002/2013MS000266.
, , , , , , , , , , , , , , , , T.L. Clune, , , , , D. Koch, , , , S. Menon, , , , , , , , , S. Sun, , N. Unger, , , and J. Zhang, 2014:Evaluation of ERA-interim and MERRA cloudiness in the Southern Ocean. J. Climate, 27, no. 5, 2109-2124, doi:10.1175/JCLI-D-13-00432.1.
, , and , 2014:Configuration and assessment of the GISS ModelE2 contributions to the CMIP5 archive. J. Adv. Model. Earth Syst., 6, no. 1, 141-184, doi:10.1002/2013MS000265.
, , , , , , , , M.K. Bhat, , , , , T.L. Clune, , R. de Fainchtein, , , , , , , , , , , S. Menon, , , A.O. Oloso, , , W.M. Putman, , , , , , R.A. Syed, , , N. Unger, , , and J. Zhang, 2014:Song, H., W. Lin, Y. Lin, Evaluation of cloud fraction simulated by seven SCMs against the ARM observations at the SGP site. J. Climate, 27, no. 17, 6698-6719, doi:10.1175/JCLI-D-13-00555.1.
, L.J. Donner, , R. Neggers, S. Endo, and Y. Liu, 2014:Stanfield, R.E., X. Dong, B. Xi, A. Kennedy, Assessment of NASA GISS CMIP5 and post-CMIP5 simulated clouds and TOA radiation budgets using satellite observations: Part I: Cloud fraction and properties. J. Climate, 27, no. 11, 4189-4208, doi:10.1175/JCLI-D-13-00558.1.
, P. Minis, and J.H. Jiang, 2014:2013
Diagnosing warm frontal cloud formation in a GCM: A novel approach using conditional subsetting. J. Climate, 26, 5827-5845, doi:10.1175/JCLI-D-12-00637.1.
, , and , 2013:Davies, L., C. Jakob, K. Cheung, A single-column model ensemble approach applied to the TWP-ICE experiment. J. Geophys. Res. Atmos., 118, no. 12, 6544-6563, doi:10.1002/jgrd.50450.
, A. Hill, T. Hume, R.J. Keane, T. Komori, V.E. Larson, Y. Lin, X. Liu, B.J. Nielsen, J. Petch, R.S. Plant, M.S. Singh, X. Shi, X. Song, W. Wang, M.A. Whitall, , S. Xie, and G. Zhang, 2013:Physical processes controlling Earth's climate. In Comparative Climatology of Terrestrial Planets. S.J. Mackwell, A.A. Simon-Miller, J.W. Harder, and M.A. Bullock, Eds., Space Science Series, University of Arizona Press, pp. 3-18, doi:10.2458/azu_uapress_9780816530595-ch001.
, 2013:Li, L., R.K. Achterberg, B.J. Conrath, P.J. Gierasch, M.A. Smith, A. Simon-Miller, C.A. Nixon, G.S. Orton, F. Flasar, X. Jiang, K.H. Baines, R. Morales-Juberias, A.P. Ingersoll, A.R. Vasavada, Strong temporal variation over one Saturnian year: From Voyager to Cassini. Sci. Rep., 3, 2410, doi:10.1038/srep02410.
, R.A. West, and S.P. Ewald, 2013:Long, C.N., S.A. McFarlane, ARM research in the Equatorial Western Pacific: A decade and counting. Bull. Amer. Meteorol. Soc., 94, 695-708, doi:10.1175/BAMS-D-11-00137.1.
, P. Minnis, T.P. Ackerman, J. Mather, J. Comstock, G.G. Mace, M. Jensen, and C. Jakob, 2013:Simon-Miller, A.A., and Exploring planetary atmospheres. Eos Trans. Amer. Geophys. Union, 94, 425-426, doi:10.1002/2013EO460007.
, 2013:Song, H., W. Lin, Y. Lin, Evaluation of precipitation simulated by seven SCMs against the ARM observation at the SGP site. J. Climate, 26, 5467-5492, doi:10.1175/JCLI-D-12-00263.1.
, R. Neggers, L.J. Donner, , and Y. Liu, 2013:Su, H., J.H. Jiang, C. Zhai, V. Perun, J.T. Shen, Diagnosis of regime-dependent cloud simulation errors in CMIP5 models using "A-Train" satellite observations and reanalysis data. J. Geophys. Res. Atmos., 118, no. 7, 2762-2780, doi:10.1029/2012JD018575.
, , L.J. Donner, L.W. Horowitz, C.J. Seman, C.J. Morcrette, J. Petch, M.A. Ringer, J. Cole, M. dos Santos Mesquita, T. Iversen, J.E. Kristjansson, A. Gettelman, L.D. Rotstayn, S.J. Jeffrey, J.-L. Dufresne, M. Watanabe, H. Kawai, T. Koshiro, T. Wu, E.M. Volodin, T. L'Ecuyer, J. Teixeira, and G.L. Stephens, 2013:Zhang, M., C.S. Bretherton, P.N. Blossey, P.H. Austin, J.T. Bacmeister, S. Bony, F. Brient, S.K. Cheedela, A. Cheng, CGILS: Results from the first phase of an international project to understand the physical mechanisms of low cloud feedbacks in single column models. J. Adv. Model. Earth Syst., 5, 826-842, doi:10.1002/2013MS000246.
, S.R. De Roode, S. Endo, C.N. Franklin, J.-C. Golaz, C. Hannay, T. Heus, F.A. Isotta, J.-L. Dufresne, I.-S. Kang, H. awai, M. Köehler, V.E. Larson, Y. Liu, A.P. Lock, U. Lohmann, M.F. Khairoutdinov, A.M. Molod, R.A.J. Neggers, P. Rasch, I. Sandu, R. Senkbeil, A.P. Siebesma, C. Siegenthaler-Le Drian, B. Stevens, M.J. Suarez, K.-M. Xu, K. von Salzen, M.J. Webb, , and M. Zhao, 2013:2012
Representing the sensitivity of convective cloud systems to tropospheric humidity in general circulation models. Surv. Geophys., 33, 637-656, doi:10.1007/s10712-011-9148-9.
, 2012:Constraints on Saturn's tropospheric general circulation from Cassini ISS images. Icarus, 219, 689-700, doi:10.1016/j.icarus.2012.03.035.
, and , 2012:The MJO transition from shallow to deep convection in CloudSat/CALIPSO data and GISS GCM simulations. J. Climate, 25, 3755-3770, doi:10.1175/JCLI-D-11-00384.1.
, , D. Kim, and , 2012:Characteristics of mesoscale organization in WRF simulations of convection during TWP-ICE. J. Climate, 25, 5666-5688, doi:10.1175/JCLI-D-11-00422.1.
, , and , 2012:Jiang, J.H., H. Su, C. Zhai, V. Perun, Evaluation of cloud and water vapor simulations in CMIP5 climate models using NASA "A-Train" satellite observations. J. Geophys. Res., 117, no. D14, D14105, doi:10.1029/2011JD017237.
, , L.J. Donner, L.W. Horowitz, C.J. Seman, J. Cole, A. Gettelman, M.A. Ringer, L.D. Rotstayn, S.J. Jeffrey, T. Wu, F. Brient, J.-L. Dufresne, H. Kawai, T. Koshiro, W. Masahiro, T.S. L'Écuyer, E.M. Volodin, T. Iversen, H. Drange, M. dos Santos Mesquita, W.G. Read, J.W. Waters, B. Tian, J. Teixeira, and G.L. Stephens, 2012:Kim, D., A.H. Sobel, The tropical subseasonal variability simulated in the NASA GISS general circulation model. J. Climate, 25, 4641-4659, doi:10.1175/JCLI-D-11-00447.1.
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