GSTDTAP  > 气候变化
DOI10.1007/s00382-016-3372-4
Multi-scale enhancement of climate prediction over land by increasing the model sensitivity to vegetation variability in EC-Earth
Alessandri, Andrea1; Catalano, Franco1; De Felice, Matteo1; Van den Hurk, Bart2; Doblas Reyes, Francisco3,5,6; Boussetta, Souhail4; Balsamo, Gianpaolo4; Miller, Paul A.7
2017-08-01
发表期刊CLIMATE DYNAMICS
ISSN0930-7575
EISSN1432-0894
出版年2017
卷号49期号:4
文章类型Article
语种英语
国家Italy; Netherlands; Spain; England; Sweden
英文摘要

The EC-Earth earth system model has been recently developed to include the dynamics of vegetation. In its original formulation, vegetation variability is simply operated by the Leaf Area Index (LAI), which affects climate basically by changing the vegetation physiological resistance to evapotranspiration. This coupling has been found to have only a weak effect on the surface climate modeled by EC-Earth. In reality, the effective sub-grid vegetation fractional coverage will vary seasonally and at interannual time-scales in response to leaf-canopy growth, phenology and senescence. Therefore it affects biophysical parameters such as the albedo, surface roughness and soil field capacity. To adequately represent this effect in EC-Earth, we included an exponential dependence of the vegetation cover on the LAI. By comparing two sets of simulations performed with and without the new variable fractional-coverage parameterization, spanning from centennial (twentieth century) simulations and retrospective predictions to the decadal (5-years), seasonal and weather time-scales, we show for the first time a significant multi-scale enhancement of vegetation impacts in climate simulation and prediction over land. Particularly large effects at multiple time scales are shown over boreal winter middle-to-high latitudes over Canada, West US, Eastern Europe, Russia and eastern Siberia due to the implemented time-varying shadowing effect by tree-vegetation on snow surfaces. Over Northern Hemisphere boreal forest regions the improved representation of vegetation cover tends to correct the winter warm biases, improves the climate change sensitivity, the decadal potential predictability as well as the skill of forecasts at seasonal and weather time-scales. Significant improvements of the prediction of 2 m temperature and rainfall are also shown over transitional land surface hot spots. Both the potential predictability at decadal time-scale and seasonal-forecasts skill are enhanced over Sahel, North American Great Plains, Nordeste Brazil and South East Asia, mainly related to improved performance in the surface evapotranspiration.


英文关键词Climate prediction Climate simulation Vegetation dynamics Land-climate interactions Earth system modeling Multi-scale prediction enhancement
领域气候变化
收录类别SCI-E
WOS记录号WOS:000407247200005
WOS关键词NUMERICAL WEATHER PREDICTION ; LEAF-AREA ; IMPACT ; SYSTEM ; ASSIMILATION ; EVAPORATION ; ENSEMBLE ; DYNAMICS ; FRACTION ; GCM
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/35548
专题气候变化
作者单位1.Agenzia Nazl Nuove Tecnol Energia & Sviluppo Econ, Bldg C59,Sp 118 CR Casaccia,Via Anguillarese 301, I-00123 Rome, Italy;
2.Royal Netherlands Meteorol Inst, De Bilt, Netherlands;
3.Inst Catala Ciencies Clima IC3, Barcelona, Spain;
4.European Ctr Medium Range Weather Forecasts, Shinfield Pk, Reading, Berks, England;
5.ICREA, Barcelona, Spain;
6.CNS, BSC, Barcelona, Spain;
7.Lund Univ, Dept Phys Geog & Ecosyst Sci, Lund, Sweden
推荐引用方式
GB/T 7714
Alessandri, Andrea,Catalano, Franco,De Felice, Matteo,et al. Multi-scale enhancement of climate prediction over land by increasing the model sensitivity to vegetation variability in EC-Earth[J]. CLIMATE DYNAMICS,2017,49(4).
APA Alessandri, Andrea.,Catalano, Franco.,De Felice, Matteo.,Van den Hurk, Bart.,Doblas Reyes, Francisco.,...&Miller, Paul A..(2017).Multi-scale enhancement of climate prediction over land by increasing the model sensitivity to vegetation variability in EC-Earth.CLIMATE DYNAMICS,49(4).
MLA Alessandri, Andrea,et al."Multi-scale enhancement of climate prediction over land by increasing the model sensitivity to vegetation variability in EC-Earth".CLIMATE DYNAMICS 49.4(2017).
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