We have investigated the spatio-temporal carbon balance patterns resulting from forcing a dynamic global vegetation model with output from 18 climate models of the CMIP5 (Coupled Model Intercomparison Project Phase 5) ensemble. We found robust patterns in terms of an extra-tropical loss of carbon, except for a temperature induced shift in phenology, leading to an increased spring uptake of carbon. There are less robust patterns in the tropics, a result of disagreement in projections of precipitation and temperature. Although the simulations generally agree well in terms of the sign of the carbon balance change in the middle to high latitudes, there are large differences in the magnitude of the loss between simulations. Together with tropica...
This study tests the ability of five Dynamic Global Vegetation Models (DGVMs), forced with observed ...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
We have investigated the spatio-temporal carbon balance patterns resulting from forcing a dynamic gl...
One of the largest sources of uncertainties in modelling of the future global climate is the respons...
Global vegetation models and terrestrial carbon cycle models are widely used for projecting the carb...
The global terrestrial carbon cycle plays a pivotal role in regulating the atmospheric composition o...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate c...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
International audienceEarth system models (ESMs) from phase 5 of the Coupled Model Intercomparison P...
This study tests the ability of five Dynamic Global Vegetation Models (DGVMs), forced with observed ...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
We have investigated the spatio-temporal carbon balance patterns resulting from forcing a dynamic gl...
One of the largest sources of uncertainties in modelling of the future global climate is the respons...
Global vegetation models and terrestrial carbon cycle models are widely used for projecting the carb...
The global terrestrial carbon cycle plays a pivotal role in regulating the atmospheric composition o...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate c...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
International audienceEarth system models (ESMs) from phase 5 of the Coupled Model Intercomparison P...
This study tests the ability of five Dynamic Global Vegetation Models (DGVMs), forced with observed ...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...