Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)

Dams and reservoirs alter downstream river water temperatures over a range of time and spatial scale. The thermal effects of dams are more noticeable immediately downstream and may persist along several kilometers. The distance for river thermal recovery depends on a combination of factors driving a...

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Autor Principal: Casado,Ana
Formato: Online
Idioma:English
Publicado: Revista Universitaria de Geografía 2017
Acceso en línea:http://bibliotecadigital.uns.edu.ar/scielo.php?script=sci_arttext&pid=S1852-42652017001100004
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spelling bda_rug-S1852-426520170011000042017-06-01Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)Casado,Ana Regulated Rivers Water Temperature Stream Structure Thermal Recovery Sauce Grande River Dams and reservoirs alter downstream river water temperatures over a range of time and spatial scale. The thermal effects of dams are more noticeable immediately downstream and may persist along several kilometers. The distance for river thermal recovery depends on a combination of factors driving and buffering heat exchange among the river, the aquifer and the atmosphere. Therefore, such distance varies significantly along regulated rivers. This study analyzes the influence of the stream structure on patterns of thermal recovery of the Sauce Grande River, Argentina. Nine indicators of topographic, morphologic and hydrologic influence are used in summer and winter water temperatures at eight different sites. Seasonal gradients of thermal recovery were irregular, and the thermal effects of the dam remained the same along 15 km monitored during both periods. Water temperature along the first 8 km was influenced by riparian vegetation and showed seasonal differences related to distinct riparian vegetation density. Irrespective of the season, down water temperatures were progressively influenced by hyporheic and phreatic flow. These findings underline the complex relationship between drivers and buffers of stream water temperature and trigger further research on the ecohydrology of this highly regulated river.Revista Universitaria de Geografía2017-06-01journal articletext/htmlhttp://bibliotecadigital.uns.edu.ar/scielo.php?script=sci_arttext&pid=S1852-42652017001100004en
institution UNS
collection Biblioteca Digital Académica
building Biblioteca Central
Biblioteca de Geografía y Turismo
bda_str Revista Universitaria de Geografía
hierarchy_parent_id bda_rug
hierarchy_parent_title Revista Universitaria de Geografía
hierarchy_top_id bda_str
hierarchy_top_title Biblioteca Digital Académica
first_indexed 2018-08-22T17:39:27Z
last_indexed 2018-08-22T17:39:27Z
language English
format Online
author Casado,Ana
spellingShingle Casado,Ana
Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
author_facet Casado,Ana
author_sort Casado,Ana
title Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
title_short Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
title_full Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
title_fullStr Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
title_full_unstemmed Influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, Sauce Grande River (Argentina)
title_sort influence of the stream structure on longitudinal gradients of thermal recovery in regulated rivers, sauce grande river (argentina)
topic_facet Regulated Rivers
Water Temperature
Stream Structure
Thermal Recovery
Sauce Grande River
type_str journal article
description Dams and reservoirs alter downstream river water temperatures over a range of time and spatial scale. The thermal effects of dams are more noticeable immediately downstream and may persist along several kilometers. The distance for river thermal recovery depends on a combination of factors driving and buffering heat exchange among the river, the aquifer and the atmosphere. Therefore, such distance varies significantly along regulated rivers. This study analyzes the influence of the stream structure on patterns of thermal recovery of the Sauce Grande River, Argentina. Nine indicators of topographic, morphologic and hydrologic influence are used in summer and winter water temperatures at eight different sites. Seasonal gradients of thermal recovery were irregular, and the thermal effects of the dam remained the same along 15 km monitored during both periods. Water temperature along the first 8 km was influenced by riparian vegetation and showed seasonal differences related to distinct riparian vegetation density. Irrespective of the season, down water temperatures were progressively influenced by hyporheic and phreatic flow. These findings underline the complex relationship between drivers and buffers of stream water temperature and trigger further research on the ecohydrology of this highly regulated river.
publisher Revista Universitaria de Geografía
publishDate 2017
url http://bibliotecadigital.uns.edu.ar/scielo.php?script=sci_arttext&pid=S1852-42652017001100004
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