Annual and interannual CO2 exchanges of the terrestrial biosphere:: process-based simulations and uncertainties

被引:175
作者
Knorr, W [1 ]
机构
[1] Max Planck Inst Biogeochem, D-07701 Jena, Germany
来源
GLOBAL ECOLOGY AND BIOGEOGRAPHY | 2000年 / 9卷 / 03期
关键词
atmospheric CO2 fluctuations; global carbon cycle; global net CO2 fluxes; global NPP; process description; global-scale parameterization; interannual climate fluctuations; terrestrial-vegetation models; uncertainties;
D O I
10.1046/j.1365-2699.2000.00159.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1 Assessments of climate change impacts on the global carbon cycle have to rely on accurate models describing the contribution of the terrestrial biosphere. Interannual climate fluctuations provide an ideal test case for their reliability because results can be checked against atmospheric measurements. 2 Intercomparisons have so far shown rather large discrepancies between the results of different terrestrial ecosystem models, especially for net primary productivity (NPP). Therefore, identification of the processes contributing most to modelling uncertainties is another necessary step towards more reliable predictions. 3 The Biosphere Energy-Transfer and Hydrology model (BETHY) is used to simulate global photosynthesis, and plant and soil respiration embedded within the full energy and water balance, based on 13 years of meteorological data. A series of sensitivity experiments is defined to assess the effects of estimated global uncertainties in a range of parameters. 4 It is found that modelling uncertainties are responsible for a large range of computed values of global annual NPP, while interannual climate fluctuations create only relatively minor changes. These fluctuations, however, are responsible for imbalances between carbon uptake by and release from the terrestrial biosphere, creating interannual fluctuations of the net biosphere-atmosphere CO2 exchange. Here, different model versions tend to agree with each other, which indicates that the net flux is generally better constrained than average NPP. A comparison with net fluxes derived from atmospheric CO2 data shows a good agreement for most models. 5 The results support the hypothesis that at the time scale of a decade, the terrestrial biosphere causes most of the interannual fluctuations of atmospheric CO2 concentrations, with the tropics playing a dominant role. They also indicate that modelling uncertainties for the net carbon exchanges tend to be less pronounced than for NPP. The method presented here, applied to other modelling studies, should also help in the identification of major uncertainties in biosphere process description, eventually leading to improved predictive capabilities of such models.
引用
收藏
页码:225 / 252
页数:28
相关论文
共 118 条
[1]  
Ajtay G. L., 1979, GLOBAL CARBON CYCLE, P129
[2]  
[Anonymous], 1991, MOD ECOL BASIC APPL, DOI DOI 10.1016/B978-0-444-89183-9.50036-8
[3]   SPATIAL HETEROGENEITY IN VEGETATION CANOPIES AND REMOTE-SENSING OF ABSORBED PHOTOSYNTHETICALLY ACTIVE RADIATION - A MODELING STUDY [J].
ASRAR, G ;
MYNENI, RB ;
CHOUDHURY, BJ .
REMOTE SENSING OF ENVIRONMENT, 1992, 41 (2-3) :85-103
[4]   VOSTOK ICE CORE PROVIDES 160,000-YEAR RECORD OF ATMOSPHERIC CO2 [J].
BARNOLA, JM ;
RAYNAUD, D ;
KOROTKEVICH, YS ;
LORIUS, C .
NATURE, 1987, 329 (6138) :408-414
[5]   A NEW TECHNIQUE FOR ESTIMATING RATES OF CARBOXYLATION AND ELECTRON-TRANSPORT IN LEAVES OF C-3 PLANTS FOR USE IN DYNAMIC GLOBAL VEGETATION MODELS [J].
BEERLING, DJ ;
QUICK, WP .
GLOBAL CHANGE BIOLOGY, 1995, 1 (04) :289-294
[6]  
BERTHELOT B, 1994, 6 INT S PHYS MEAS SI
[7]   A method of biophysical parameter retrieval at global scale by inversion of a vegetation reflectance model [J].
Bicheron, P ;
Leroy, M .
REMOTE SENSING OF ENVIRONMENT, 1999, 67 (03) :251-266
[8]  
Box E. O., 1981, MACROCLIMATE PLANT F
[9]   The response of global terrestrial ecosystems to interannual temperature variability [J].
Braswell, BH ;
Schimel, DS ;
Linder, E ;
Moore, B .
SCIENCE, 1997, 278 (5339) :870-872
[10]  
Brutsaert W., 2013, Evaporation into the Atmosphere: Theory, History and Applications