Scinovex
article Open AccessTop 1% cited

A New Two-Moment Bulk Stratiform Cloud Microphysics Scheme in the Community Atmosphere Model, Version 3 (CAM3). Part I: Description and Numerical Tests

Journal of Climate · 2008 · Vol. 21(15) · pp. 3642–3659
Hugh MorrisonAndrew Gettelman

Abstract

Abstract A new two-moment stratiform cloud microphysics scheme in a general circulation model is described. Prognostic variables include cloud droplet and cloud ice mass mixing ratios and number concentrations. The scheme treats several microphysical processes, including hydrometeor collection, condensation/evaporation, freezing, melting, and sedimentation. The activation of droplets on aerosol is physically based and coupled to a subgrid vertical velocity. Unique aspects of the scheme, relative to existing two-moment schemes developed for general circulation models, are the diagnostic treatment of rain and snow number concentration and mixing ratio and the explicit treatment of subgrid cloud water variability for calculation of the microphysical process rates. Numerical aspects of the scheme are described in detail using idealized one-dimensional offline tests of the microphysics. Sensitivity of the scheme to time step, vertical resolution, and numerical method for diagnostic precipitation is investigated over a range of conditions. It is found that, in general, two substeps are required for numerical stability and reasonably small time truncation errors using a time step of 20 min; however, substepping is only required for the precipitation microphysical processes rather than the entire scheme. A new numerical approach for the diagnostic rain and snow produces reasonable results compared to a benchmark simulation, especially at low vertical resolution. Part II of this study details results of the scheme in single-column and global simulations, including comparison with observations.

Atmospheric aerosols and cloudsMeteorological Phenomena and SimulationsPrecipitation Measurement and AnalysisMeteorologyPrecipitationEnvironmental scienceCloud physicsNumerical weather predictionComputer simulationAtmospheric modelSnowMoment (physics)Atmosphere (unit)

Funding

  • National Science Foundation
  • National Aeronautics and Space Administration
  • National Center for Atmospheric Research
Citations
1,266
FWCI
17.47
field-weighted impact
References
56
Percentile
100%
vs. same field & year
Citations per year
Cited by
The Community Earth System Model: A Framework for Collaborative Research
Bulletin of the American Meteorological Society · 2013 · 2,799 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

A New Two-Moment Bulk Stratiform Cloud Microphysics Scheme in the Community Atmosphere Model, Version 3 (CAM3). Part I: Description and Numerical Tests · Scinovex