Understanding how fire regimes change over time is of major importance for understanding their future impact on the Earth system, including society. Large differences in simulated burned area between fire models show that there is substantial uncertainty associated with modelling global change impacts on fire regimes. We draw here on sensitivity simulations made by seven global dynamic vegetation models participating in the Fire Model Intercomparison Project (FireMIP) to understand how differences in models translate into differences in fire regime projections. The sensitivity experiments isolate the impact of the individual drivers on simulated burned area, which are prescribed in the simulations. Specifically these drivers are atmospheric...
International audienceFire is an important global ecological process that influences the distributio...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...
This is the author accepted manuscriptUnderstanding how fire regimes change over time is of major im...
Fire is an important global ecological process that influences the distribution of biomes, with cons...
Fire is an integral Earth System process that interacts with climate in multiple ways. Here we asses...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Global fire-vegetation models are widely used to assess impacts of environmental change on fire regi...
Global environmental changes and human activity influence wildland fires worldwide, but the relative...
This is the final version. Available from European Geosciences Union (EGU) via the DOI in this recor...
Fire is an important global ecological process that influences the distribution of biomes, with cons...
International audienceFire is an important global ecological process that influences the distributio...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...
This is the author accepted manuscriptUnderstanding how fire regimes change over time is of major im...
Fire is an important global ecological process that influences the distribution of biomes, with cons...
Fire is an integral Earth System process that interacts with climate in multiple ways. Here we asses...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Global fire-vegetation models are widely used to assess impacts of environmental change on fire regi...
Global environmental changes and human activity influence wildland fires worldwide, but the relative...
This is the final version. Available from European Geosciences Union (EGU) via the DOI in this recor...
Fire is an important global ecological process that influences the distribution of biomes, with cons...
International audienceFire is an important global ecological process that influences the distributio...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...