Modification of a Parametrization of Shallow Convection in the Grey Zone Using a Mesoscale Model

被引:12
|
作者
Lancz, David [1 ]
Szintai, Balazs [1 ]
Honnert, Rachel [2 ]
机构
[1] Hungarian Meteorol Serv, Kitaibel Pal U 1, H-1024 Budapest, Hungary
[2] Meteo France CNRS 42, CNRM UMR 3589, Ave Gaspard Coriolis, F-31057 Toulouse 01, France
关键词
Grey zone; Kilometric scale; Numerical weather prediction; Scale dependency; Shallow convection; HUNGARIAN METEOROLOGICAL SERVICE; LARGE-EDDY SIMULATIONS; BOUNDARY-LAYER; GRAY-ZONE; TURBULENCE; FLUX; PARAMETERIZATION; SYSTEM; DRY; REPRESENTATION;
D O I
10.1007/s10546-018-0375-1
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
In current operational numerical weather prediction models, the effect of shallow convection is parametrized. The grey zone of shallow convection is found between the horizontal resolutions of mesoscale numerical models (2-3 km) and large-eddy simulations (10-100m or finer). At these horizontal scales the shallow convection is to some extent explicitly resolved by the model. The shallow-convection parametrization is still needed, but has to be regulated according to the model horizontal resolution. Here the behaviour of the non-hydrostatic mesoscale numerical weather prediction model Application of Research to Operations at Mesoscale is examined in the grey zone and a new scale-adaptive surface closure of its shallow-convection parametrization, dependent on horizontal resolution, is defined based on large-eddy simulation. The new closure is tested on a series of numerical experiments and validated on a 15-day-long real case period. Its impact on the development of deep convection is examined in detail. The idealized simulations show promising results, as the mean profiles of the subgrid and resolved turbulence change in the desired way. Based on the real case tests our modification has a low impact on model performance, but is part of a set of upgrades of the current parametrization that is aimed to treat the shallow convection grey zone.
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页码:483 / 503
页数:21
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