Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution

The authors analyse 9 years of time-lapse surveys in Bute Inlet, British Columbia (CA), to show how an active submarine channel evolves. They show how channel evolution is controlled by fast upstream-migration of steep knickpoints, which are similar to waterfalls in rivers.

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Autores principales: Maarten S. Heijnen, Michael A. Clare, Matthieu J. B. Cartigny, Peter J. Talling, Sophie Hage, D. Gwyn Lintern, Cooper Stacey, Daniel R. Parsons, Stephen M. Simmons, Ye Chen, Esther J. Sumner, Justin K. Dix, John E. Hughes Clarke
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ec7a423e3da249999882ceea1e6cfb11
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spelling oai:doaj.org-article:ec7a423e3da249999882ceea1e6cfb112021-12-02T17:40:00ZRapidly-migrating and internally-generated knickpoints can control submarine channel evolution10.1038/s41467-020-16861-x2041-1723https://doaj.org/article/ec7a423e3da249999882ceea1e6cfb112020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16861-xhttps://doaj.org/toc/2041-1723The authors analyse 9 years of time-lapse surveys in Bute Inlet, British Columbia (CA), to show how an active submarine channel evolves. They show how channel evolution is controlled by fast upstream-migration of steep knickpoints, which are similar to waterfalls in rivers.Maarten S. HeijnenMichael A. ClareMatthieu J. B. CartignyPeter J. TallingSophie HageD. Gwyn LinternCooper StaceyDaniel R. ParsonsStephen M. SimmonsYe ChenEsther J. SumnerJustin K. DixJohn E. Hughes ClarkeNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Maarten S. Heijnen
Michael A. Clare
Matthieu J. B. Cartigny
Peter J. Talling
Sophie Hage
D. Gwyn Lintern
Cooper Stacey
Daniel R. Parsons
Stephen M. Simmons
Ye Chen
Esther J. Sumner
Justin K. Dix
John E. Hughes Clarke
Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
description The authors analyse 9 years of time-lapse surveys in Bute Inlet, British Columbia (CA), to show how an active submarine channel evolves. They show how channel evolution is controlled by fast upstream-migration of steep knickpoints, which are similar to waterfalls in rivers.
format article
author Maarten S. Heijnen
Michael A. Clare
Matthieu J. B. Cartigny
Peter J. Talling
Sophie Hage
D. Gwyn Lintern
Cooper Stacey
Daniel R. Parsons
Stephen M. Simmons
Ye Chen
Esther J. Sumner
Justin K. Dix
John E. Hughes Clarke
author_facet Maarten S. Heijnen
Michael A. Clare
Matthieu J. B. Cartigny
Peter J. Talling
Sophie Hage
D. Gwyn Lintern
Cooper Stacey
Daniel R. Parsons
Stephen M. Simmons
Ye Chen
Esther J. Sumner
Justin K. Dix
John E. Hughes Clarke
author_sort Maarten S. Heijnen
title Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
title_short Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
title_full Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
title_fullStr Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
title_full_unstemmed Rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
title_sort rapidly-migrating and internally-generated knickpoints can control submarine channel evolution
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ec7a423e3da249999882ceea1e6cfb11
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