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A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes

This article presents field measurements that document the physical and chemical response of riverbeds to critical hydrological and sedimentary forcing in the Selune River (France). The river flows into the bay of Mont Saint-Michel and thus impacts numerous economic activities and the spawning of se...

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Autores principales: Ba, Mouhamadoul Moustapha, Heyman, Joris, Rivière, Agnès, Soulayrol, Marc Oliver, Stubbe, Vincent, Meric, Francois, Kergosien, Bruno, Rolland, Pascal, Petton, Chistophe, Lavenant, Nicolas, Kermarrec, Jean Jacques, Crave, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9801075/
https://www.ncbi.nlm.nih.gov/pubmed/36591382
http://dx.doi.org/10.1016/j.dib.2022.108837
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author Ba, Mouhamadoul Moustapha
Heyman, Joris
Rivière, Agnès
Soulayrol, Marc Oliver
Stubbe, Vincent
Meric, Francois
Kergosien, Bruno
Rolland, Pascal
Petton, Chistophe
Lavenant, Nicolas
Kermarrec, Jean Jacques
Crave, Alain
author_facet Ba, Mouhamadoul Moustapha
Heyman, Joris
Rivière, Agnès
Soulayrol, Marc Oliver
Stubbe, Vincent
Meric, Francois
Kergosien, Bruno
Rolland, Pascal
Petton, Chistophe
Lavenant, Nicolas
Kermarrec, Jean Jacques
Crave, Alain
author_sort Ba, Mouhamadoul Moustapha
collection PubMed
description This article presents field measurements that document the physical and chemical response of riverbeds to critical hydrological and sedimentary forcing in the Selune River (France). The river flows into the bay of Mont Saint-Michel and thus impacts numerous economic activities and the spawning of several key species such as Atlantic salmon and lamprey. To restore the hydro-sedimentary continuity of the river, two dams are currently being removed. Significant changes in the stream flow regime, stream-aquifer exchanges and sediment transport are expected, hence the monitoring campaign. A network autonomous sensor (water level, temperature, conductivity, oxygen and pressure differential) was installed on 18 October 2021 at various depths in the riverbed and the river for a one-year period. This was to continuously record variations in the main physico-chemical variables and relate them to surface processes. To assess the impact of dam removal on these variables, two measurement sites were chosen: one upstream of the dams where flow conditions remained stable, and another downstream of the dams where a large amount of fine sediment has been released. This original data can be used to determine the biogeochemical functioning of the hyporheic zone and its coupling with dynamical flow and sedimentary processes.
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spelling pubmed-98010752022-12-31 A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes Ba, Mouhamadoul Moustapha Heyman, Joris Rivière, Agnès Soulayrol, Marc Oliver Stubbe, Vincent Meric, Francois Kergosien, Bruno Rolland, Pascal Petton, Chistophe Lavenant, Nicolas Kermarrec, Jean Jacques Crave, Alain Data Brief Data Article This article presents field measurements that document the physical and chemical response of riverbeds to critical hydrological and sedimentary forcing in the Selune River (France). The river flows into the bay of Mont Saint-Michel and thus impacts numerous economic activities and the spawning of several key species such as Atlantic salmon and lamprey. To restore the hydro-sedimentary continuity of the river, two dams are currently being removed. Significant changes in the stream flow regime, stream-aquifer exchanges and sediment transport are expected, hence the monitoring campaign. A network autonomous sensor (water level, temperature, conductivity, oxygen and pressure differential) was installed on 18 October 2021 at various depths in the riverbed and the river for a one-year period. This was to continuously record variations in the main physico-chemical variables and relate them to surface processes. To assess the impact of dam removal on these variables, two measurement sites were chosen: one upstream of the dams where flow conditions remained stable, and another downstream of the dams where a large amount of fine sediment has been released. This original data can be used to determine the biogeochemical functioning of the hyporheic zone and its coupling with dynamical flow and sedimentary processes. Elsevier 2022-12-17 /pmc/articles/PMC9801075/ /pubmed/36591382 http://dx.doi.org/10.1016/j.dib.2022.108837 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Data Article
Ba, Mouhamadoul Moustapha
Heyman, Joris
Rivière, Agnès
Soulayrol, Marc Oliver
Stubbe, Vincent
Meric, Francois
Kergosien, Bruno
Rolland, Pascal
Petton, Chistophe
Lavenant, Nicolas
Kermarrec, Jean Jacques
Crave, Alain
A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title_full A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title_fullStr A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title_full_unstemmed A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title_short A dataset on physico-chemical hyporheic variables in the Selune River: Towards understanding the impact of dam removal on riverbed clogging processes
title_sort dataset on physico-chemical hyporheic variables in the selune river: towards understanding the impact of dam removal on riverbed clogging processes
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9801075/
https://www.ncbi.nlm.nih.gov/pubmed/36591382
http://dx.doi.org/10.1016/j.dib.2022.108837
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