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  4. Channel inception through bottom‐current erosion of pockmarks revealed by numerical simulation
 
Zitierlink DOI
10.26092/elib/2342
Verlagslink DOI
10.1002/esp.5610

Channel inception through bottom‐current erosion of pockmarks revealed by numerical simulation

Veröffentlichungsdatum
2023-04-23
Autoren
Yu, Kaiqi  
Lefebvre, Alice  
Li, Wei  
Zhan, Wenhuan  
Miramontes, Elda  
Zusammenfassung
In deep-marine environments, the inception of channels can be induced by the interaction between bottom currents and rough topography. However, it is still unclear under which conditions such features can form and what happens in the earliest phase of channel development. In this study, based on the morphological, sedimentary and oceanographic settings of a pockmark field in the NW South China Sea, we reveal the process of channel inception through the erosion of pockmarks by bottom currents. Using numerical simulations, we show that an appropriate current velocity can induce the erosion of pockmark trains in cohesive sediments, leading to the coalescence of discrete pockmarks and the formation of a channel with a rough thalweg. The interaction of bottom currents with the pockmarks induces a significant erosion along the pockmarks axis. Bottom current erosion is strongest at the downstream edges of pockmarks, where the horizontal velocity reaches a maximum and an upwelling forms. Erosion increases as the distance between pockmarks reduces. In our simulation results, a channel is only formed by the coalescence of pockmarks if the distance between pockmarks is <6 times the diameter of the pockmark. This study provides evidence of the formation of channels by bottom currents, which helps reconstruct paleoceanographic conditions based on sediment architecture. It also shows the complex hydrodynamics at these structures that strongly control sedimentary processes and may affect distribution of benthic ecosystems in marine environments.
Schlagwörter
Channel inception

; 

Bottom current erosion

; 

Pockmark

; 

Numerical Simulation

; 

Morphological evolution
Fachbereich
Fachbereich 05: Geowissenschaften (FB 05)  
Institute
Marum – Zentrum für Marine Umweltwissenschaften  
Dokumenttyp
Artikel/Aufsatz
Zeitschrift/Sammelwerk
Earth Surface Processes and Landforms  
Startseite
1
Endseite
14
Zweitveröffentlichung
Ja
Dokumentversion
Postprint
Lizenz
https://creativecommons.org/licenses/by/4.0/
Sprache
Englisch
Dateien
Lade...
Vorschaubild
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Yu_etal_supplementary-material-ESPL-2023_Postprint.pdf

Description
Postprint
Size

615.31 KB

Format

Adobe PDF

Checksum

(MD5):c88f15f56e85ead3a4b1d9819f58a774

Lade...
Vorschaubild
Name

Yu_etal_2023_Channel inception through bottom-current erosion of pockmarks revealed by numerical simulation.pdf

Description
Postprint
Size

3.92 MB

Format

Adobe PDF

Checksum

(MD5):358bc46e0297c47ca4b92bfc03007bf4

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