Parameterization of Cloud Microphysics Based on the Prediction of Bulk Ice Particle Properties. Part I: Scheme Description and Idealized TestsHugh Morrison, Jason A. Milbrandt|Journal of the Atmospheric Sciences|2014Cited by 705
Impact of entrainment-mixing and turbulent fluctuations on droplet size distributions in a cumulus cloud: An investigation using Lagrangian microphysics with a sub-grid-scale modelKamal Kant Chandrakar, George H. Bryan, Wojciech W. Grabowski et al.|Journal of the Atmospheric Sciences|2021Cited by 60
Influences of Environmental Relative Humidity and Horizontal Scale of Subcloud Ascent on Deep Convective InitiationHugh Morrison, Steven C. Sherwood, Kamal Kant Chandrakar et al.|Journal of the Atmospheric Sciences|2021Cited by 52
Evolution of Droplet Size Distributions During the Transition of an Ultraclean Stratocumulus Cloud System to Open Cell Structure: An LES Investigation Using Lagrangian MicrophysicsKamal Kant Chandrakar, Mikael Witte, Hugh Morrison|Geophysical Research Letters|2022Cited by 21
Are turbulence effects on droplet collision–coalescence a key to understanding observed rain formation in clouds?Kamal Kant Chandrakar, R. Paul Lawson, Wojciech W. Grabowski et al.|Proceedings of the National Academy of Sciences|2024Cited by 19