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Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape

The long‐term morphodynamic evolution of estuaries depends on a combination of antecedent topography and boundary conditions, including fluvial input, sea‐level change and regional‐landscape interactions. Identifying effects of such boundary conditions on estuary evolution is important to anticipate...

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Autores principales: de Haas, Tjalling, van der Valk, Lambertus, Cohen, Kim M., Pierik, Harm Jan, Weisscher, Steven A. H., Hijma, Marc P., van der Spek, Ad J. F., Kleinhans, Maarten G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6743690/
https://www.ncbi.nlm.nih.gov/pubmed/31543980
http://dx.doi.org/10.1002/dep2.56
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author de Haas, Tjalling
van der Valk, Lambertus
Cohen, Kim M.
Pierik, Harm Jan
Weisscher, Steven A. H.
Hijma, Marc P.
van der Spek, Ad J. F.
Kleinhans, Maarten G.
author_facet de Haas, Tjalling
van der Valk, Lambertus
Cohen, Kim M.
Pierik, Harm Jan
Weisscher, Steven A. H.
Hijma, Marc P.
van der Spek, Ad J. F.
Kleinhans, Maarten G.
author_sort de Haas, Tjalling
collection PubMed
description The long‐term morphodynamic evolution of estuaries depends on a combination of antecedent topography and boundary conditions, including fluvial input, sea‐level change and regional‐landscape interactions. Identifying effects of such boundary conditions on estuary evolution is important to anticipate future changes in specific boundary conditions and for hindcasting with numerical and physical models. A comprehensive synthesis of the evolution of the former Old Rhine estuary is presented here, together with its boundary conditions over its full lifespan from 6,500 to 1,000 cal. yr bp. This system formed during a period of sea‐level high stand, during which the estuary served as the main River Rhine outlet. The estuary went through three stages of evolution: a maturation phase in a wide infilling back‐barrier basin, a stable mature phase and an abandoning phase, both in a laterally confined setting. The Old Rhine River formed by a river avulsion around 6,500 cal. yr bp that connected to a tidal channel within a large back‐barrier basin. Decelerating sea‐level rise caused the back‐barrier basin to silt up around 5,700 cal. yr bp, resulting in shoreline progradation by beach‐barrier formation until ∼2,000 cal. yr bp. Beach‐barrier formation along the coast and natural levee formation along the river triggered peat formation in the coastal plain, laterally constraining the estuary and limiting overbank deposition, which caused most sediment to accumulate offshore. The abandoning phase started around 2,200 cal. yr bp when a series of upstream avulsions led to a substantial reduction in fluvial input. This induced a period of enhanced estuarine overbank clay deposition that continued into near‐complete silting up and estuary closure around 1200 ad. These findings exemplify how tidal systems, formed in wide coastal plains during sea‐level high stand, depend on antecedent conditions, and how they respond to connection and disconnection of a large river over long, millennial timescales.
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spelling pubmed-67436902019-09-18 Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape de Haas, Tjalling van der Valk, Lambertus Cohen, Kim M. Pierik, Harm Jan Weisscher, Steven A. H. Hijma, Marc P. van der Spek, Ad J. F. Kleinhans, Maarten G. Depos Rec Original Research Articles The long‐term morphodynamic evolution of estuaries depends on a combination of antecedent topography and boundary conditions, including fluvial input, sea‐level change and regional‐landscape interactions. Identifying effects of such boundary conditions on estuary evolution is important to anticipate future changes in specific boundary conditions and for hindcasting with numerical and physical models. A comprehensive synthesis of the evolution of the former Old Rhine estuary is presented here, together with its boundary conditions over its full lifespan from 6,500 to 1,000 cal. yr bp. This system formed during a period of sea‐level high stand, during which the estuary served as the main River Rhine outlet. The estuary went through three stages of evolution: a maturation phase in a wide infilling back‐barrier basin, a stable mature phase and an abandoning phase, both in a laterally confined setting. The Old Rhine River formed by a river avulsion around 6,500 cal. yr bp that connected to a tidal channel within a large back‐barrier basin. Decelerating sea‐level rise caused the back‐barrier basin to silt up around 5,700 cal. yr bp, resulting in shoreline progradation by beach‐barrier formation until ∼2,000 cal. yr bp. Beach‐barrier formation along the coast and natural levee formation along the river triggered peat formation in the coastal plain, laterally constraining the estuary and limiting overbank deposition, which caused most sediment to accumulate offshore. The abandoning phase started around 2,200 cal. yr bp when a series of upstream avulsions led to a substantial reduction in fluvial input. This induced a period of enhanced estuarine overbank clay deposition that continued into near‐complete silting up and estuary closure around 1200 ad. These findings exemplify how tidal systems, formed in wide coastal plains during sea‐level high stand, depend on antecedent conditions, and how they respond to connection and disconnection of a large river over long, millennial timescales. John Wiley and Sons Inc. 2019-01-02 2019-02 /pmc/articles/PMC6743690/ /pubmed/31543980 http://dx.doi.org/10.1002/dep2.56 Text en © 2018 The Authors. The Depositional Record published by John Wiley & Sons Ltd on behalf of International Association of Sedimentologists. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research Articles
de Haas, Tjalling
van der Valk, Lambertus
Cohen, Kim M.
Pierik, Harm Jan
Weisscher, Steven A. H.
Hijma, Marc P.
van der Spek, Ad J. F.
Kleinhans, Maarten G.
Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title_full Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title_fullStr Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title_full_unstemmed Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title_short Long‐term evolution of the Old Rhine estuary: Unravelling effects of changing boundary conditions and inherited landscape
title_sort long‐term evolution of the old rhine estuary: unravelling effects of changing boundary conditions and inherited landscape
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6743690/
https://www.ncbi.nlm.nih.gov/pubmed/31543980
http://dx.doi.org/10.1002/dep2.56
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