Articles | Volume 11, issue 20
https://doi.org/10.5194/acp-11-10389-2011
https://doi.org/10.5194/acp-11-10389-2011
Research article
 | 
19 Oct 2011
Research article |  | 19 Oct 2011

Simulating deep convection with a shallow convection scheme

C. Hohenegger and C. S. Bretherton

Related subject area

Subject: Clouds and Precipitation | Research Activity: Atmospheric Modelling and Data Analysis | Altitude Range: Troposphere | Science Focus: Physics (physical properties and processes)
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Cited articles

Arakawa, A.: The cumulus parameterization problem: Past, present, and future, J. Climate, 17, 2493–2525, 2004.
Arakawa, A. and Schubert, W. H.: Interaction of a cumulus cloud ensemble with large-scale environment, Part 1, J. Atmos. Sci., 31, 674–701, 1974.
Bechtold, P., Chaboureau, J. P., Beljaars, A., Betts, A. K., Kohler, M., Miller, M., and Redelsperger, J. L.: The simulation of the diurnal cycle of convective precipitation over land in a global model, Q. J. Roy. Meteorol. Soc., 130, 3119–3137, 2004.
Bechtold, P., Kohler, M., Jung, T., Doblas-Reyes, F., Leutbecher, M., Rodwell, J., Vitart, F., and Balsamo, G.: Advances in simulating atmospheric variability with the ECMWF model: From synoptic to decadal time-scales, Q. J. Roy. Meteorol. Soc., 134, 1337–1351, 2008.
Blossey, P. N., Bretherton, C. S., and Cetrone, J.: Cloud-resolving model simulations of KWAJEX: Model sensitivities and comparisons with satellite and radar observations, J. Atmos. Sci., 64, 1488–1508, 2007.
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