Magdalena river: Hydro-morphodynamic of the delta area under extreme hydrological events

Humberto Ávila, German Rivillas, Guillermo Acuña, Juan Rueda

Producción científica: Capítulo del libro/informe/acta de congresoPonencia publicada en las memorias del evento con ISBNrevisión exhaustiva

Resumen

The Magdalena River, located in Colombia, is considered the longest South American interandino river and the most important in the country. It has a length of 1,550 km from its origin at 3,385 meters above sea level to its mouth at the Caribbean Sea. In the last 10 years, the hydrological regime of the river has changed by having more frequently high and low flow rates which have caused a relatively rapid morphological changes in the delta area. This paper reports the results of evaluating the hydro-morphodynamic conditions of the river at its delta area form the river mouth to 115 Km upstream, under extreme high and low events. A 2D/3D numerical model was setup in Delft-3D. The results reported in the hydro-morphodynamic analysis suggest that temporary hydrological changes may cause significant short-term morphological changes in the delta area of Magdalena River. In addition, it suggests that river training works should include adaptive strategies for hydrological regime changes caused by climate change, watershed modification or El Niño and La Niña phenomena.

Idioma originalInglés
Título de la publicación alojadaRiver Flow - Proceedings of the International Conference on Fluvial Hydraulics, RIVER FLOW 2016
EditoresGeorge Constantinescu, Marcelo Garcia, Dan Hanes
EditorialCRC Press/Balkema
Páginas1243-1248
Número de páginas6
ISBN (versión impresa)9781138029132
DOI
EstadoPublicada - 2016
Publicado de forma externa
EventoInternational Conference on Fluvial Hydraulics, RIVER FLOW 2016 - St. Louis, Estados Unidos
Duración: 11 jul. 201614 jul. 2016

Serie de la publicación

NombreRiver Flow - Proceedings of the International Conference on Fluvial Hydraulics, RIVER FLOW 2016

Conferencia

ConferenciaInternational Conference on Fluvial Hydraulics, RIVER FLOW 2016
País/TerritorioEstados Unidos
CiudadSt. Louis
Período11/07/1614/07/16

Nota bibliográfica

Publisher Copyright:
© 2016 Taylor & Francis Group, London.

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