International audienceRecent climate changes have increased fire-prone weather conditions in many regions and have likely affected fire occurrence, which might impact ecosystem functioning, biogeochemical cycles, and society. Prediction of how fire impacts may change in the future is difficult because of the complexity of the controls on fire occurrence and burned area. Here we aim to assess how process-based fire-enabled dynamic global vegetation models (DGVMs) represent relationships between controlling factors and burned area. We developed a pattern-oriented model evaluation approach using the random forest (RF) algorithm to identify emergent relationships between climate, vegetation, and socio-economic predictor variables and burned are...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
The seasonal and longer-term dynamics of fuel accumulation affect fire seasonality and the occurrenc...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
This is the final version. Available from European Geosciences Union (EGU) via the DOI in this recor...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
The seasonal and longer-term dynamics of fuel accumulation affect fire seasonality and the occurrenc...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
International audienceRecent climate changes have increased fire-prone weather conditions in many re...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
This is the final version. Available from European Geosciences Union (EGU) via the DOI in this recor...
Recent climate changes have increased fire-prone weather conditions in many regions and have likely ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
Fire is a major disturbance agent in terrestrial ecosystems. The occurrence and spread of wildfires ...
The seasonal and longer-term dynamics of fuel accumulation affect fire seasonality and the occurrenc...
We assess the influence of humans on burned area simulated with a dynamic global vegetation model. T...