Science Advances · 2019 · 407 citations · 39 references
EngineeringTerrestrial Ecosystem ProductivityDrought ResilienceEarth ScienceCompound DroughtTerrestrial EcosystemDrought Risk ManagementDrought ForecastingSoil MoistureArid EnvironmentClimate ChangeCarbon SequestrationBiogeochemistryAtmospheric AridityDrought StressDrought AnalysisAridity EventsTerrestrial Carbon CostsClimatologyDroughtDrylandsDrought Management
Drought and atmospheric aridity pose large risks to ecosystem services and agricultural production. However, these factors are seldom assessed together as compound events, although they often occur simultaneously. Drought stress on terrestrial carbon uptake is characterized by soil moisture (SM) deficit and high vapor pressure deficit (VPD). We used in situ observations and 15 Earth system models to show that compound events with very high VPD and low SM occur more frequently than expected if these events were independent. These compound events are projected to become more frequent and more extreme and exert increasingly negative effects on continental productivity. Models project intensified negative effects of high VPD and low SM on vegetation productivity, with the intensification of SM exceeding those of VPD in the Northern Hemisphere. These results highlight the importance of compound extreme events and their threats for the capability of continents to act as a carbon sink.
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Europe-wide reduction in primary productivity caused by the heat and drought in 2003
P. Ciais, Markus Reichstein, Nicolas Viovy et al. · Nature · 2005 · 4.1K citations · Full text
Markus Reichstein, Eva Falge, Dennis Baldocchi et al. · Global Change Biology · 2005 · 3.9K citations · Full text
Engineering, Ecological Modelling, Terrestrial Ecosystem Productivity +18
Global warming and changes in drought
Kevin E. Trenberth, Aiguo Dai, Gerard van der Schrier et al. · Nature Climate Change · 2013 · 3.2K citations