The global climate–vegetation model HadSM3_TRIFFID has been used to estimate the equilibrium states of climate and vegetation with pre-industrial and last glacial boundary conditions. The present study focuses on the evaluation of the terrestrial biosphere component (TRIFFID) and its response to changes in climate and CO2 concentration. We also show how, by means of a diagnosis of the distribution of plant functional types according to climate parameters (soil temperature, winter temperature, growing-degree days, precipitation), it is possible to get better insights into the strengths and weaknesses of the biosphere model by reference to field knowledge of ecosystems. The model exhibits profound changes between the vegetation distribution a...
The carbon fluxes, stocks and isotopic budgets of the land biosphere at mid-Holocene (6 ka BP) and l...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO₂ changes between the last glacial maxim...
The biosphere is a major pool in the global carbon cycle; its response to climatic change is therefo...
The terrestrial biosphere model Carbon Assimilation in the Biosphere (CARAIB) was improved by introd...
A simplified three-dimensional global climate model was used to simulate the surface temperature and...
This thesis describes the development and selected applications of a global vegetation model, BIOME4...
A simplified three‐dimensional global climate model was used to simulate the surface temperature and...
Much work is under way to identify and quantify the feedbacks between vegetation and climate. Palaeo...
International audienceClimatic changes that accompanied the transition from the last glacial to the ...
BIOME 6000 is an international project to map vegetation globally at mid-Holocene (6000 C-14 yr sp) ...
BIOME 6000 is an international project to map vegetation globally at mid-Holocene (6000 14C yr bp) a...
The carbon fluxes, stocks and isotopic budgets of the land biosphere at mid-Holocene (6 ka BP) and l...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO₂ changes between the last glacial maxim...
The biosphere is a major pool in the global carbon cycle; its response to climatic change is therefo...
The terrestrial biosphere model Carbon Assimilation in the Biosphere (CARAIB) was improved by introd...
A simplified three-dimensional global climate model was used to simulate the surface temperature and...
This thesis describes the development and selected applications of a global vegetation model, BIOME4...
A simplified three‐dimensional global climate model was used to simulate the surface temperature and...
Much work is under way to identify and quantify the feedbacks between vegetation and climate. Palaeo...
International audienceClimatic changes that accompanied the transition from the last glacial to the ...
BIOME 6000 is an international project to map vegetation globally at mid-Holocene (6000 C-14 yr sp) ...
BIOME 6000 is an international project to map vegetation globally at mid-Holocene (6000 14C yr bp) a...
The carbon fluxes, stocks and isotopic budgets of the land biosphere at mid-Holocene (6 ka BP) and l...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...