The frequency of heatwaves, droughts and their co-occurrence vary greatly in simulations of different climate models. Since these extremes are expected to become more frequent with climate change, it is important to understand how vegetation models respond to different climatologies in heatwave and drought occurrence. In previous work, six climate scenarios featuring different drought-heat signatures have been developed to investigate how single versus compound extremes affect vegetation and carbon dynamics. Here, we use these scenarios to force six dynamic global vegetation models to investigate model agreement in vegetation and carbon cycle response to these scenarios. We find that global responses to different drought-heat signatures var...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
The global carbon cycle is essential for many aspects of the climate system and life in general. Wit...
Over the last six decades the terrestrial biosphere has sequestered on average about 29% of the anth...
Climatic extreme events are expected to occur more frequently in the future, increasing the likeliho...
Climatic extreme events are expected to occur more frequently in the future, increasing the likeliho...
Purpose of the Review Weather and climate extremes substantially affect global- and regional-scale c...
Purpose of the Review Weather and climate extremes substantially affect global- and regional-scale c...
abstract: The impacts of climate extremes on terrestrial ecosystems are poorly understood but import...
Future climate change has the potential to increase drought in many regions of the globe, making it ...
Understanding the role of climate extremes and their impact on the carbon (C) cycle is increasingly ...
Severe drought plays a critical role in altering the magnitude and interannual variability of the ne...
This study compares the dynamic vegetation response in two Dynamic Global Vegetation Models (DGVMs) ...
Carbon dioxide, a greenhouse gas, traps heat in the atmosphere, causing the planet to warm. The rate...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
The global carbon cycle is essential for many aspects of the climate system and life in general. Wit...
Over the last six decades the terrestrial biosphere has sequestered on average about 29% of the anth...
Climatic extreme events are expected to occur more frequently in the future, increasing the likeliho...
Climatic extreme events are expected to occur more frequently in the future, increasing the likeliho...
Purpose of the Review Weather and climate extremes substantially affect global- and regional-scale c...
Purpose of the Review Weather and climate extremes substantially affect global- and regional-scale c...
abstract: The impacts of climate extremes on terrestrial ecosystems are poorly understood but import...
Future climate change has the potential to increase drought in many regions of the globe, making it ...
Understanding the role of climate extremes and their impact on the carbon (C) cycle is increasingly ...
Severe drought plays a critical role in altering the magnitude and interannual variability of the ne...
This study compares the dynamic vegetation response in two Dynamic Global Vegetation Models (DGVMs) ...
Carbon dioxide, a greenhouse gas, traps heat in the atmosphere, causing the planet to warm. The rate...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Global climate change is expected to increase drought duration and intensity in certain regions whil...