4.6 Article

Changes in atmospheric moisture transport over tropical South America: an analysis under a climate change scenario

Journal

CLIMATE DYNAMICS
Volume -, Issue -, Pages -

Publisher

SPRINGER
DOI: 10.1007/s00382-023-06833-4

Keywords

Atmospheric moisture transport; Moisture recycling; Northern South America; Amazon; Climate change

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Warming induced by increased greenhouse gas emissions is intensifying the global water cycle and increasing the water vapor content of the global atmosphere. However, the impact on regional atmospheric moisture transport and recycling in a warming climate has not been thoroughly studied. This research focuses on the projections for atmospheric moisture transport and recycling in tropical South America by the end of the twenty-first century under a climate change scenario. The findings show increased precipitable water linked to increased ocean evaporation, but also reductions in precipitation from main atmospheric moisture sources, total precipitation, and recycled precipitation over the region.
Warming induced by increased greenhouse gas emissions is intensifying the global water cycle and increasing the water vapor content of the global atmosphere. However, there is a lack of scientific literature assessing how regional atmospheric moisture transport and recycling will change in a warming climate. This work analyzes the projections of atmospheric moisture transport and recycling over tropical South America by the end of the twenty-first century (2070-2100) under a climate change scenario (RCP8.5). We used the Dynamic Recycling Model to estimate atmospheric moisture contributions to the region considering input data from the European Centre for Medium-Range Weather Forecasts ERA5 reanalysis and 11 models included in the Fifth Phase of the Coupled Model Intercomparison Project. Projected increases of precipitable water in tropical South America are linked with increased evaporation from the oceans. However, those projections also indicate (1) reductions in the precipitation contributed by the main atmospheric moisture sources to the continental regions of tropical South America, (2) reductions of total precipitation, and (3) reductions of recycled precipitation over the region. The largest reductions of precipitation recycling are projected over the southern Amazon during the dry-to-wet transition season (about 31%) and the northern Amazon during its dry season (about 25%). This is particularly relevant since the southern Amazon has experienced the occurrence of longer dry seasons during the recent decades and has been highlighted as a hotspot of climate change.

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