Benchmarking coupled climate-carbon models against long-term atmospheric CO2 measurements

被引:75
作者
Cadule, P. [1 ,5 ]
Friedlingstein, P. [1 ,6 ]
Bopp, L. [1 ]
Sitch, S. [4 ,7 ]
Jones, C. D. [2 ]
Ciais, P. [1 ]
Piao, S. L. [3 ]
Peylin, P. [1 ,8 ]
机构
[1] CEA, CNRS, UVSQ, UMR CEA,IPSL,LSCE, F-91191 Gif Sur Yvette, France
[2] Hadley Ctr, Met Off, Exeter EX1 3PB, Devon, England
[3] Peking Univ, Dept Ecol, Beijing 100871, Peoples R China
[4] JCHMR, Met Off, Wallingford OX10 8BB, Oxon, England
[5] UPMC, IPSL, Paris, France
[6] Univ Bristol, Dept Earth Sci, QUEST, Bristol, Avon, England
[7] Univ Leeds, Sch Geog, Leeds LS2 9JT, W Yorkshire, England
[8] BIOEMCO, Biogeochim Isotop Lab, Lab Biogeochim & Ecol Milieux Continentaux, Thiverval Grignon, France
关键词
NET PRIMARY PRODUCTION; SEASONAL CYCLE; ORGANIC-CARBON; MAUNA-LOA; LAND-USE; INTERANNUAL VARIABILITY; ECOSYSTEM CARBON; STOMATAL CONDUCTANCE; POSITIVE FEEDBACK; WATER DYNAMICS;
D O I
10.1029/2009GB003556
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We evaluated three global models of the coupled carbon-climate system against atmospheric CO2 concentration measured at a network of stations. These three models, HadCM3LC, IPSL-CM2-C, and IPSL-CM4-LOOP, participated in the (CMIP)-M-4 experiment and in various other simulations of the future climate impacts on the land and ocean carbon cycle. A new set of performance metrics is defined and applied to quantify each model's ability to reproduce the global growth rate, the seasonal cycle, the El Nino-Southern Oscillation (ENSO)-forced interannual variability of atmospheric CO2, and the sensitivity to climatic variations. Knowing that the uncertainty on the amplitude, in 2100, of the climate-carbon feedback is mainly due to the uncertainty of the response of the terrestrial biosphere to the climate change, our new metrics primarily target the evaluation of the land parameterization of the carbon cycle. The modeled fluxes are prescribed to the same global atmospheric transport model LMDZ4, and the simulated concentrations are compared to available observations. We found that the IPSL-CM4-LOOP model is best able to reproduce the phase and amplitude of the atmospheric CO2 seasonal cycle in the Northern Hemisphere, while the other two models generally underestimate the seasonal amplitude. This points to some shortcomings in describing the vegetation phenology and heterotropic respiration response to climate. We also found that IPSL-CM2-C produces a climate-driven abnormal source of CO2 to the atmosphere in response to El Nino anomalies. Here a good model performance rests upon a realistic simulation of ENSO-type climate variability and the subsequent tropical carbon cycle response. The three climate models underestimate the sea surface temperature warm anomaly during an El Nino, but HadCM3LC does best in reproducing the interannual CO2 variability. More efforts are needed to further develop metrics for assessing the sensitivity of the carbon cycle to climate change, and this work should now be extended to assess ocean carbon models against observations.
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页数:24
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