Author Bibliographies
Publications by Jingbo Wu
This citation list includes papers published while the author has been on staff at NASA's Goddard Institute for Space Studies. It may include some publications based on research conducted prior to their having joined the institute.
Submitted / In Review
, , Z.J. Luo, T. Matsui, A.F. Prein, and , 2025: Estimating vertical velocity in convective updrafts from temperature, pressure, and latent heating. J. Atmos. Sci., submitted.
2025
Aerenson, T., D. McCoy, , and , 2025: Drivers of model spread in snowpack changes across the American Mountain West. J. Climate, 38, no. 22, 66505-6619, doi:10.1175/JCLI-D-25-0103.1.
, , Q. Yang, , , , , , , A. Behrangi, S.J. Camargo, , , , and J.D.O. Strong, 2025: Using machine learning to generate a GISS ModelE calibrated physics ensemble (CPE). J. Adv. Model. Earth Syst., 17, no. 4, e2024MS004713, doi:10.1029/2024MS004713.
Meegan-Kumar, D., , D.S. Battisti, , , J. Sexton, and J.W. Baldwin, 2025: Optimizing topographic boundary conditions for East Pacific climate simulation. J. Climate, 38, no. 11, 2497-2524, doi:10.1175/JCLI-D-24-0316.1.
Werapitiya, G., D.T. McCoy, , A. Gettelman, T. Eidhammer, T. Aerenson, C. Song, and , 2025: Climate model extratropical cloud feedback constrained by cloud sources and sinks in cyclones. J. Climate, 38, no. 24, 7285-7300, doi:10.1175/JCLI-D-24-0607.1.
2024
, M. Luo, , , , , , , and , 2024: Estimating the impact of a 2017 smoke plume on surface climate over northern Canada with a climate model, satellite retrievals, and weather forecasts. J. Geophys. Res. Atmos., 129, no. 15, e2023JD039396, doi:10.1029/2023JD039396.
2023
Ahsan, H., H. Wang, , M. Wu, S.J. Smith, , H. Suchyta, D. Olivié, G. Myhre, H. Matsui, H. Bian, J.-F. Lamarque, K. Carslaw, L. Horowitz, L. Regayre, M. Chin, M. Schulz, R.B. Skeie, T. Takemura, and V. Naik, 2023: The Emissions Model Intercomparison Project (Emissions-MIP): Quantifying model sensitivity to emission characteristics. Atmos. Chem. Phys., 23, no. 23, 14779-14799, doi:10.5194/acp-23-14779-2023.
2022
, R. Roca, T. Fiolleau, , and , 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. 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: Future climate change under SSP emission scenarios with GISS-E2.1. J. Adv. Model. Earth Syst., 14, no. 7, e2021MS002871, doi:10.1029/2021MS002871.
2021
, , , , , , , , , , 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: CMIP6 historical simulations (1850-2014) with GISS-E2.1. J. Adv. Model. Earth Syst., 13, no. 1, e2019MS002034, doi:10.1029/2019MS002034.
2020
, , , , , , , , and , 2020: Historical (1850-2014) aerosol evolution and role on climate forcing using the GISS ModelE2.1 contribution to CMIP6. J. Adv. Model. Earth Syst., 12, no. 8, e2019MS001978, doi:10.1029/2019MS001978.
, , , , , , , , , 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: GISS-E2.1: Configurations and climatology. J. Adv. Model. Earth Syst., 12, no. 8, e2019MS002025, doi:10.1029/2019MS002025.
2017
Adames, Á.F., D. Kim, A.H. Sobel, , and , 2017: 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.
Adames, A.F., D. Kim, A.H. Sobel, , and , 2017: 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.
2015
, , , , , and D. Kim, 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.
2012
, , 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.
2010
, and , 2010: The role of entrainment in the diurnal cycle of continental convection. J. Climate, 23, 2722-2738, doi:10.1175/2009JCLI3340.1.
2009
Lin, W., J. Zhang, and , 2009: Simulation of low clouds from the CAM and the regional WRF with multiple nested resolutions. Geophys. Res. Lett., 36, L08813, doi:10.1029/2008GL037088.
, , , and , 2009: WRF and GISS SCM simulations of convective updraft properties during TWP-ICE. J. Geophys. Res., 114, D04206, doi:10.1029/2008JD010851.
2007
, M. Zhang, and W. Lin, 2007: A case study of a frontal system simulated by a climate model: Clouds and radiation. J. Geophys. Res., 112, D12201, doi:10.1029/2006JD008238.
2005
Zhang, M.H., W.Y. Lin, S.A. Klein, J.T. Bacmeister, S. Bony, R.T. Cederwall, , J.J. Hack, N.G. Loeb, U. Lohmann, P. Minnis, I. Musat, R. Pincus, P. Stier, M.J. Suarez, M.J. Webb, , S.C. Xie, , and J.H. Zhang, 2005: Comparing clouds and their seasonal variations in 10 atmospheric general circulation models with satellite measurements. J. Geophys. Res., 110, D15S02, doi:10.1029/2004JD005021.

