Entrainment in Cumulus Clouds: What Resolution is Cloud-Resolving?

Author:

Craig George C.1,Dörnbrack Andreas1

Affiliation:

1. Institut für Physik der Atmosphäre, DLR Oberpfaffenhofen, Wessling, Germany

Abstract

Abstract Systematic numerical experiments were conducted to determine the spatial resolution required to resolve a moist thermal show convergence at a scale proportional to the smaller of the initial thermal diameter D0 and a buoyancy length scale Lbuoy. The buoyancy length scale Lbuoy = ΔT0/ΔΓ (ΔT0 is the initial buoyancy excess of the thermal and ΔΓ is the ambient stratification) describes the maximum vertical displacement that can be induced against the stratification in the environment by buoyancy-driven pressure perturbations in the cloud and, thus, the maximum scale of eddies that cross the cloud boundary. For typical atmospheric conditions in which the cloud size D0 is larger than Lbuoy, numerical simulations of the mixing processes in cumulus clouds must resolve Lbuoy.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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