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Quantifying the effects of horizontal grid length and parameterised convection on the degree of convective organisation using a metric of the potential for convective interaction

Abstract:
The organisation of deep convection and its misrepresentation in many global models is the focus of much current interest. We present a new method for quantifying convective organisation based on the identification of convective objects and subsequent derivation of object numbers, areas and separation distances to describe the degree of convective organisation. These parameters are combined into a ‘convection organisation potential’ based on the physical principle of an interaction potential between pairs of convective objects. We apply this technique to simulated and observed fields of outgoing longwave radiation (OLR) over the West African monsoon region using data from Met Office Unified Model simulations and satellite observations made by the Geostationary Earth Radiation Budget instrument (GERB). We evaluate our method by using it to quantify differences between models with different horizontal grid lengths and representations of convection. Distributions of OLR, precipitation and organisation parameters, the diurnal cycle of convection, and relationships between the meteorology in different states of organisation are compared. Switching from a configuration with parameterised convection to one which allows the model to resolve convective processes at the model gridscale is the leading order factor improving some aspects of model performance, while increased model resolution is the dominant factor for others. However, no single model configuration performs best compared to observations, indicating underlying deficiencies in both model scaling and process understanding.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1175/JAS-D-16-0307.1

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Institution:
University of Oxford
Division:
MPLS Division
Department:
Physics; Atmos Ocean & Planet Physics
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Atmos Ocean & Planet Physics
Oxford college:
Oriel College
Role:
Author



Publisher:
American Meteorological Society
Journal:
Journal of the Atmospheric Sciences More from this journal
Volume:
75
Issue:
2
Pages:
425–450
Publication date:
2018-01-24
Acceptance date:
2017-10-03
DOI:
EISSN:
1520-0469
ISSN:
0022-4928


Keywords:
Pubs id:
pubs:732259
UUID:
uuid:b39fd00d-279c-45f3-a4a2-4d45a9df560f
Local pid:
pubs:732259
Source identifiers:
732259
Deposit date:
2017-10-05

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