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The PMIP4 simulated dryland aridity changes during the Last Interglacial

Dados Bibliográficos

ID15545643
AutoresShanshan Liu (0000-0003-4615-2045, Nanjing University of Information Science and Technology, autor correspondente), Xuecheng Zhou (Jiangsu Provincial Meteorological Bureau)
Ano2023
Volume18
Fascículo9
Páginas094056-094056
Data de publicação2023-09-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoEnvironmental Research Letters (JOURNAL)
Identificadores do periódicoISSN: 1748-9326 • E-ISSN: 1748-9326
EditoraIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/acf725
OpenAlexW4386468568
IdiomaEN
Referências citadas42

The dryland is one of the most important land ecosystems on the planet, and its changes are closely bound up with one-third of the world’s population. Investigating dryland climate change during the Last Interglacial (LIG; ∼127 ka ago) can advance our knowledge of dryland climate behaviors in an orbitally-induced warmer-than-present scenario. Based on the multiple model outputs from the Paleoclimate Modelling Intercomparison Project Phase 4, we suggest that the dryland areas during the LIG are 37% wetter than that during the preindustrial period as measured by the aridity index (AI), and 37% of the preindustrial drylands correspondingly convert to wetter subtypes. Spatially, there are hemispheric differences with drylands wetting and contracting in the Northern Hemisphere but desiccating and expanding in the Southern Hemisphere. Further diagnosis indicates that the altered precipitation is the dominant contributor to more than 72% of the AI changes, and the precipitation change is mainly attributed to the orbitally-induced redistribution of incoming insolation and heat. The secondary factor is the relative humidity change, exaggerating the AI changes in the same direction as the precipitation does. The simulation agrees reasonably with reconstructions for most regions, except Australia and southern Africa. The simulated changes in dryland aridity and the mechanism differ from that in future warming scenarios, so we claim that the LIG as a potential analogue for a warmer future does not fully hold for the dryland climate

Arid · Aridity index · Atmospheric sciences · Biome · Climate change · Climate model · Climatology · Ecosystem · Geography · Glacial period · Interglacial · Meteorology · Northern Hemisphere · Paleoclimatology · Precipitation · Southern Hemisphere · Climate variability and models · Environmental Science · Geology and Paleoclimatology Research · Isotope Analysis in Ecology · Ecology · Geology

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