This work presents the development of a two-moment cloud microphysics scheme within the version 5 of the NASA Goddard Earth Observing System (GEOS-5). The scheme includes the implementation of a comprehensive stratiform microphysics module, a new cloud coverage scheme that allows ice supersaturation and a new microphysics module embedded within the moist convection parameterization of GEOS-5. Comprehensive physically-based descriptions of ice nucleation, including homogeneous and heterogeneous freezing, and liquid droplet activation are implemented to describe the formation of cloud particles in stratiform clouds and convective cumulus. The effect of preexisting ice crystals on the formation of cirrus clouds is also accounted for. A new par...
Two advanced bulk cloud microphysics schemes, namely, Thompson and Morrison schemes, are evaluated b...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
A one dimensional model of cloud microphysics was used to simulate the formation and evolution of po...
This work presents the development of a two-moment cloud microphysics scheme within version 5 of the...
A new stratiform cloud scheme including a two-moment bulk microphysics module, a cloud cover paramet...
The CMIP5 configurations of the GISS Model-E2 GCM simulated a mid- and high latitude ice IWP that de...
Cloud properties and their evolution influence Earth's radiative balance. The cloud microphysical (C...
Abstract. A new stratiform cloud scheme including a two-moment bulk microphysics module, a cloud cov...
April 25, 1995.Also issued as author's dissertation (Ph.D.) -- Colorado State University, 1995.Inclu...
A new cloud microphysics scheme (PCI) has been developed to yield a more physically based representa...
We generate trajectories in storm-resolving simulations in order to quantify the effect of ice micro...
Mixed-phase clouds, which are composed of both supercooled liquid droplets and ice crystals, are ubi...
The multiscale modeling framework (MMF), which replaces traditional cloud parameterizations with clo...
We present a new cloud scheme for the ECHAM‐HAM global climate model (GCM) that includes prognostic ...
The salient features of mixed-phase and ice clouds in a GCM cloud scheme are examined using the ice ...
Two advanced bulk cloud microphysics schemes, namely, Thompson and Morrison schemes, are evaluated b...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
A one dimensional model of cloud microphysics was used to simulate the formation and evolution of po...
This work presents the development of a two-moment cloud microphysics scheme within version 5 of the...
A new stratiform cloud scheme including a two-moment bulk microphysics module, a cloud cover paramet...
The CMIP5 configurations of the GISS Model-E2 GCM simulated a mid- and high latitude ice IWP that de...
Cloud properties and their evolution influence Earth's radiative balance. The cloud microphysical (C...
Abstract. A new stratiform cloud scheme including a two-moment bulk microphysics module, a cloud cov...
April 25, 1995.Also issued as author's dissertation (Ph.D.) -- Colorado State University, 1995.Inclu...
A new cloud microphysics scheme (PCI) has been developed to yield a more physically based representa...
We generate trajectories in storm-resolving simulations in order to quantify the effect of ice micro...
Mixed-phase clouds, which are composed of both supercooled liquid droplets and ice crystals, are ubi...
The multiscale modeling framework (MMF), which replaces traditional cloud parameterizations with clo...
We present a new cloud scheme for the ECHAM‐HAM global climate model (GCM) that includes prognostic ...
The salient features of mixed-phase and ice clouds in a GCM cloud scheme are examined using the ice ...
Two advanced bulk cloud microphysics schemes, namely, Thompson and Morrison schemes, are evaluated b...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
A one dimensional model of cloud microphysics was used to simulate the formation and evolution of po...