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A continuous buoyancy based convection scheme: one- and three-dimensional validation Cover

A continuous buoyancy based convection scheme: one- and three-dimensional validation

By:   
Open Access
|Jan 2011

Abstract

A new and consistent convection scheme, providing continuous treatment of this atmospheric process, is described. The main concept ensuring the consistency of the whole system is buoyancy, a key element of any convective vertical motion. The buoyancy constitutes the forcing term of the convective vertical velocity, which is then used to define the triggering condition, the mass flux and the rates of entrainment—detrainment. The buoyancy is also used in its vertically integrated form to express the closure condition as a CAPE relaxation. The continuous treatment of convection from dry thermals to deep precipitating cumulus is made possible through the use of a continuous formulation of the entrainment—detrainment rates and CAPE relaxation time, together with an embedded precipitation scheme. This convection scheme is first evaluated with the help of single-column model simulations of specific case studies encompassing a variety of convective situations. Second, a coupled general-circulation model multiyear simulation is provided as a means to assess the model climate with respect to observations.

Language: English
Page range: 687 - 706
Submitted on: Apr 20, 2010
Accepted on: Feb 28, 2011
Published on: Jan 1, 2011
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2011 J. F. Guérémy, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.