convective boundary layer;
stratocumulus;
global climate model;
mass flux scheme;
LARGE-EDDY SIMULATIONS;
DIURNAL CYCLE;
PART II;
COHERENT STRUCTURES;
MIXED LAYERS;
STRATOCUMULUS;
FLUX;
ENTRAINMENT;
SCALE;
DRY;
D O I:
10.1029/2019MS001666
中图分类号:
P4 [大气科学(气象学)];
学科分类号:
0706 ;
070601 ;
摘要:
The representation of stratocumulus clouds, and of the stratocumulus to cumulus transitions which are ubiquitous features of marine boundary layer clouds, remains a challenge for climate models. We show how a mass flux representation of boundary layer convective structures combined with an eddy diffusivity scheme, the "thermal plume model," first developed to represent cumulus clouds, can also adequately simulate stratocumulus and the stratocumulus to cumulus transition in a climate model. To achieve this, the detrainment formulation, in which detrainment increases for increasing negative buoyancy, has to be slightly modified: the buoyancy of a thermal plume parcel of air is computed by comparing the virtual potential temperature theta(v,th) of the parcel with that of the surrounding environment theta(v,env) at a given distance above instead of at the same level. This is consistent with the picture of detrained air parcels that experience some overshoot and reach a final destination at a level lower than the one at which they effectively leave the cloud or organized convective plume. The impacts of this modification are documented both for selected cases of stratocumulus, in comparison with large-eddy simulations, and in full 3-D climate simulations, in comparison with satellite observations of cloud cover. The modified scheme provides a uniform treatment of the dry convective boundary layer, of cumulus clouds, of stratocumulus, and of the transition from stratocumulus to cumulus. It is included in the most recent version of the LMDZ atmospheric general circulation model.
机构:
Univ Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, FranceUniv Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, France
Colaitis, A.
Spiga, A.
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Univ Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, FranceUniv Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, France
Spiga, A.
Hourdin, F.
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Univ Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, FranceUniv Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, France
Hourdin, F.
Rio, C.
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机构:
Univ Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, FranceUniv Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, France
Rio, C.
Forget, F.
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Univ Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, FranceUniv Paris 06, Lab Meteorol Dynam, Inst Pierre Simon Laplace, CNRS, F-75005 Paris, France
机构:
CALTECH, Jet Prop Lab, Pasadena, CA 91109 USACALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
Suselj, Kay
Teixeira, Joao
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CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
Univ Calif Los Angeles, Joint Inst Reg Earth Syst Sci & Engn, Los Angeles, CA USACALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
Teixeira, Joao
Chung, Daniel
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CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
Univ Melbourne, Dept Mech Engn, Melbourne, Vic, AustraliaCALTECH, Jet Prop Lab, Pasadena, CA 91109 USA