A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)

Abstract Synchronous interaction between bottom currents and turbidity currents has been reported often in channel–levée systems where the thickness of the turbidity currents exceeds that of the levées. Such interplay between along‐slope and down‐slope sedimentary processes is one of the mechanisms...

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Published in:Sedimentology
Main Authors: Mencaroni, Davide, Urgeles, Roger, Camerlenghi, Angelo, Llopart, Jaume, Ford, Jonathan, Sanchez Serra, Cristina, Meservy, William, GrÀcia, EulÀlia, Rebesco, Michele, Zitellini, Nevio
Other Authors: McArthur, Adam, H2020 Marie Skłodowska-Curie Actions
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2021
Subjects:
Online Access:http://dx.doi.org/10.1111/sed.12844
https://onlinelibrary.wiley.com/doi/pdf/10.1111/sed.12844
https://onlinelibrary.wiley.com/doi/full-xml/10.1111/sed.12844
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spelling crwiley:10.1111/sed.12844 2024-09-15T18:24:17+00:00 A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin) Mencaroni, Davide Urgeles, Roger Camerlenghi, Angelo Llopart, Jaume Ford, Jonathan Sanchez Serra, Cristina Meservy, William GrÀcia, EulÀlia Rebesco, Michele Zitellini, Nevio McArthur, Adam H2020 Marie Skłodowska-Curie Actions 2021 http://dx.doi.org/10.1111/sed.12844 https://onlinelibrary.wiley.com/doi/pdf/10.1111/sed.12844 https://onlinelibrary.wiley.com/doi/full-xml/10.1111/sed.12844 en eng Wiley http://creativecommons.org/licenses/by-nc/4.0/ Sedimentology volume 68, issue 5, page 2069-2096 ISSN 0037-0746 1365-3091 journal-article 2021 crwiley https://doi.org/10.1111/sed.12844 2024-07-23T04:11:15Z Abstract Synchronous interaction between bottom currents and turbidity currents has been reported often in channel–levée systems where the thickness of the turbidity currents exceeds that of the levées. Such interplay between along‐slope and down‐slope sedimentary processes is one of the mechanisms by which ‘mixed turbidite–contourite systems’ can originate. However, bottom currents flow over large areas of the seafloor, including continental slopes characterized by deeply incised submarine canyons rather than channel levées. In these cases, a direct interaction between along‐slope and down‐slope currents is, theoretically, unlikely to take place. In this study, oceanographic, swath bathymetry, multichannel seismic data and sediment cores are used to investigate a 25 km long, 10 km wide and up to 0.5 km thick deep‐sea late Quaternary deposit that sits adjacent to the north‐west flank of one of the major canyons in the North Atlantic, the São Vicente Canyon, in the Alentejo Basin (south‐west Iberian margin). The area receives the influence of a strong bottom current, the Mediterranean Outflow Water, which has swept the continental slope at different water depth ranges during glacial and interglacial periods. Architectural patterns and sediment characteristics suggest that this sedimentary body, named Marquês de Pombal Drift, is the result of the interaction between the Mediterranean Outflow Water (particularly during cold periods) and turbidity currents flowing along the São Vicente Canyon. Because the canyon is incised significantly deeper ( ca 1.5 km) than the thickness of turbidity currents, an additional process, in comparison to earlier models, is needed to allow the interaction with the Mediterranean Outflow Water and transport sediment out of the canyon. In the São Vicente Canyon, and likely in other canyons worldwide, interaction of turbidity currents with contour currents requires intermediate nepheloid layers that export the finer‐grained fraction of turbidity currents out of the canyon at the boundary ... Article in Journal/Newspaper North Atlantic Wiley Online Library Sedimentology 68 5 2069 2096
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Abstract Synchronous interaction between bottom currents and turbidity currents has been reported often in channel–levée systems where the thickness of the turbidity currents exceeds that of the levées. Such interplay between along‐slope and down‐slope sedimentary processes is one of the mechanisms by which ‘mixed turbidite–contourite systems’ can originate. However, bottom currents flow over large areas of the seafloor, including continental slopes characterized by deeply incised submarine canyons rather than channel levées. In these cases, a direct interaction between along‐slope and down‐slope currents is, theoretically, unlikely to take place. In this study, oceanographic, swath bathymetry, multichannel seismic data and sediment cores are used to investigate a 25 km long, 10 km wide and up to 0.5 km thick deep‐sea late Quaternary deposit that sits adjacent to the north‐west flank of one of the major canyons in the North Atlantic, the São Vicente Canyon, in the Alentejo Basin (south‐west Iberian margin). The area receives the influence of a strong bottom current, the Mediterranean Outflow Water, which has swept the continental slope at different water depth ranges during glacial and interglacial periods. Architectural patterns and sediment characteristics suggest that this sedimentary body, named Marquês de Pombal Drift, is the result of the interaction between the Mediterranean Outflow Water (particularly during cold periods) and turbidity currents flowing along the São Vicente Canyon. Because the canyon is incised significantly deeper ( ca 1.5 km) than the thickness of turbidity currents, an additional process, in comparison to earlier models, is needed to allow the interaction with the Mediterranean Outflow Water and transport sediment out of the canyon. In the São Vicente Canyon, and likely in other canyons worldwide, interaction of turbidity currents with contour currents requires intermediate nepheloid layers that export the finer‐grained fraction of turbidity currents out of the canyon at the boundary ...
author2 McArthur, Adam
H2020 Marie Skłodowska-Curie Actions
format Article in Journal/Newspaper
author Mencaroni, Davide
Urgeles, Roger
Camerlenghi, Angelo
Llopart, Jaume
Ford, Jonathan
Sanchez Serra, Cristina
Meservy, William
GrÀcia, EulÀlia
Rebesco, Michele
Zitellini, Nevio
spellingShingle Mencaroni, Davide
Urgeles, Roger
Camerlenghi, Angelo
Llopart, Jaume
Ford, Jonathan
Sanchez Serra, Cristina
Meservy, William
GrÀcia, EulÀlia
Rebesco, Michele
Zitellini, Nevio
A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
author_facet Mencaroni, Davide
Urgeles, Roger
Camerlenghi, Angelo
Llopart, Jaume
Ford, Jonathan
Sanchez Serra, Cristina
Meservy, William
GrÀcia, EulÀlia
Rebesco, Michele
Zitellini, Nevio
author_sort Mencaroni, Davide
title A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
title_short A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
title_full A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
title_fullStr A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
title_full_unstemmed A mixed turbidite – contourite system related to a major submarine canyon: The Marquês de Pombal Drift (south‐west Iberian margin)
title_sort mixed turbidite – contourite system related to a major submarine canyon: the marquês de pombal drift (south‐west iberian margin)
publisher Wiley
publishDate 2021
url http://dx.doi.org/10.1111/sed.12844
https://onlinelibrary.wiley.com/doi/pdf/10.1111/sed.12844
https://onlinelibrary.wiley.com/doi/full-xml/10.1111/sed.12844
genre North Atlantic
genre_facet North Atlantic
op_source Sedimentology
volume 68, issue 5, page 2069-2096
ISSN 0037-0746 1365-3091
op_rights http://creativecommons.org/licenses/by-nc/4.0/
op_doi https://doi.org/10.1111/sed.12844
container_title Sedimentology
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container_issue 5
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