The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings

The greatest discharges of the Paraguay River were studied using monthly series of Ladario, Brazil, at the outlet of the vast wetland of the Pantanal, and Asunción, Paraguay, at the middle Paraguay River outlet. Most of the major discharges at Asunción peaked between May and July, in phase with the...

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Autores principales: Barros, V., Chamorro, L., Coronel, G., Baez, J.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_1525755X_v5_n6_p1161_Barros
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spelling todo:paper_1525755X_v5_n6_p1161_Barros2023-10-03T16:21:03Z The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings Barros, V. Chamorro, L. Coronel, G. Baez, J. atmospheric circulation climate forcing El Nino hydrometeorology peak discharge precipitation (climatology) river basin river discharge Paraguay River South America Western Hemisphere World The greatest discharges of the Paraguay River were studied using monthly series of Ladario, Brazil, at the outlet of the vast wetland of the Pantanal, and Asunción, Paraguay, at the middle Paraguay River outlet. Most of the major discharges at Asunción peaked between May and July, in phase with the annual maximum of the river discharges. They originated in the upper and middle Paraguay basins and were independent of the Pantanal output because their climate forcings were different from those of the Pantanal. In fact, most of the major discharge contributions from the upper and middle Paraguay basins occurred during El Niño (EN) periods, while at the Pantanal outlet they happened in neutral periods. The top discharge occurred during the autumn following the EN onset year. The composite of these cases has a tropospheric circulation that enhances the subtropical jet and the cyclonic vorticity advection over the Alto Paraná and the upper and middle Paraguay basins, favoring large positive anomalies in the precipitation field. Not all the major discharges were related to EN. Particularly, the major discharges that peaked in winter shared common features, despite their occurrence during EN, La Ninña, or the neutral phases. Their April to August fields had an almost barotropic pattern at high latitudes with a deep cyclonic anomaly between 120° and 160°W and an anticyclonic anomaly over the southern tip of South America. This pattern is consistent with a northward shift of the synoptic perturbation tracks, which favors fields of positive precipitation anomalies over the Paraguay basin. © 2004 American Meteorological Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_1525755X_v5_n6_p1161_Barros
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic atmospheric circulation
climate forcing
El Nino
hydrometeorology
peak discharge
precipitation (climatology)
river basin
river discharge
Paraguay River
South America
Western Hemisphere
World
spellingShingle atmospheric circulation
climate forcing
El Nino
hydrometeorology
peak discharge
precipitation (climatology)
river basin
river discharge
Paraguay River
South America
Western Hemisphere
World
Barros, V.
Chamorro, L.
Coronel, G.
Baez, J.
The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
topic_facet atmospheric circulation
climate forcing
El Nino
hydrometeorology
peak discharge
precipitation (climatology)
river basin
river discharge
Paraguay River
South America
Western Hemisphere
World
description The greatest discharges of the Paraguay River were studied using monthly series of Ladario, Brazil, at the outlet of the vast wetland of the Pantanal, and Asunción, Paraguay, at the middle Paraguay River outlet. Most of the major discharges at Asunción peaked between May and July, in phase with the annual maximum of the river discharges. They originated in the upper and middle Paraguay basins and were independent of the Pantanal output because their climate forcings were different from those of the Pantanal. In fact, most of the major discharge contributions from the upper and middle Paraguay basins occurred during El Niño (EN) periods, while at the Pantanal outlet they happened in neutral periods. The top discharge occurred during the autumn following the EN onset year. The composite of these cases has a tropospheric circulation that enhances the subtropical jet and the cyclonic vorticity advection over the Alto Paraná and the upper and middle Paraguay basins, favoring large positive anomalies in the precipitation field. Not all the major discharges were related to EN. Particularly, the major discharges that peaked in winter shared common features, despite their occurrence during EN, La Ninña, or the neutral phases. Their April to August fields had an almost barotropic pattern at high latitudes with a deep cyclonic anomaly between 120° and 160°W and an anticyclonic anomaly over the southern tip of South America. This pattern is consistent with a northward shift of the synoptic perturbation tracks, which favors fields of positive precipitation anomalies over the Paraguay basin. © 2004 American Meteorological Society.
format JOUR
author Barros, V.
Chamorro, L.
Coronel, G.
Baez, J.
author_facet Barros, V.
Chamorro, L.
Coronel, G.
Baez, J.
author_sort Barros, V.
title The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
title_short The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
title_full The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
title_fullStr The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
title_full_unstemmed The major discharge events in the Paraguay River: Magnitudes, source regions, and climate forcings
title_sort major discharge events in the paraguay river: magnitudes, source regions, and climate forcings
url http://hdl.handle.net/20.500.12110/paper_1525755X_v5_n6_p1161_Barros
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