4.7 Article

Streamflow variations across the Andes (18°-55°S) during the instrumental era

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SCIENTIFIC REPORTS
卷 9, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-019-53981-x

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  1. Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET, Argentina)
  2. [FONDECYT 1161381]
  3. [1181956]
  4. [CONICYT/FONDAP 15110009]

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The rivers originating in the southern Andes (18 degrees-55 degrees S) support numerous ecosystems and a large number of human populations and socio-economic activities in the adjacent lowlands of Chile, Argentina and Bolivia. Here we show that ca. 75% of the total variance in the streamflow records from this extensive region can be explained by only eight spatially coherent patterns of variability. Five (three) of these Andean patterns exhibit extreme dry (wet) conditions in recent years, with strong interannual variations in northern Chile; long-term drying trends between 31 degrees and 41 degrees S; a transitional pattern in the central Patagonian Andes; and increasing trends in northwestern Argentina and southern Bolivia, the Fueguian Andes, and the eastern portion of the South Patagonian Icefield. Multivariate regression analyses show that large-scale indices of ENSO variability can predict 20% to 45% of annual runoff variability between 28 degrees and 46 degrees S. The influence of Antarctic and North Pacific indices becomes more relevant south of 43 degrees S and in northwestern Argentina and southern Bolivia, respectively, but their overall skill as predictors of Andean streamflows is weak. The analyses provide relevant new information to improve understanding of the spatial coherence, the main temporal features, and the ocean-atmospheric forcings of surface runoff across the southern Andes.

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