Marine Biodiversity and Ecosystem Functioning
EU Network of Excellence

 
Main Menu

· Home
· Contacts
· Data Systems
· Documents
· FAQ
· Links
· MarBEF Open Archive
· Network Description
· Outreach
· Photo Gallery
· Quality Assurance
· Register of Resources
· Research Projects
· Rules and Guidelines
· Training
· Wiki
· Worldconference

 

Register of Resources (RoR)

 People  |  Datasets  |  Literature  |  Institutes  |  Projects 

[ report an error in this record ]basket (0): add | show Print this page

Multi-criteria characterisation of buried incised valleys and late Quaternary landscape evolution south of Dogger Bank, southern North Sea
Kyriakoudi, D.; De Batist, M.; Vervoort, M.; Mestdagh, T.; Missiaen, T.; Plets, R. (2026). Multi-criteria characterisation of buried incised valleys and late Quaternary landscape evolution south of Dogger Bank, southern North Sea. Quat. Sci. Rev. 389: 110119. https://dx.doi.org/10.1016/j.quascirev.2026.110119
In: Quaternary Science Reviews. Pergamon Press: Oxford; New York. ISSN 0277-3791; e-ISSN 1873-457X
Peer reviewed article  

Available in  Authors 

Keywords
    Earth sciences > Geology > Geomorphology
    Earth sciences > Geology > Stratigraphy
    Glaciation
    Dogger Bank [Marine Regions]; North Sea [Marine Regions]
Author keywords
    Quaternary; 3D seismic reflection data; 2D high-resolution reflection acoustic data; Incised valleys

Authors  Top 
  • Kyriakoudi, D.
  • De Batist, M.
  • Vervoort, M.
  • Mestdagh, T.
  • Missiaen, T.
  • Plets, R.

Abstract
    Buried incised valleys are prominent features in the southern North Sea that preserve a detailed record of Quaternary landscape evolution, yet their origin, timing and infill remain poorly documented. Their presence provides key evidence for reconstructing the paleolandscape and for understanding the role of glacial-interglacial processes in both valley formation and regional evolution. Here, we integrate 2D high-resolution acoustic reflection data with extant 3D seismic data and multivariable morphometric clustering to map and classify a dense network of buried incisions south of Dogger Bank. Three morphostratigraphic generations of incised valleys are identified, each reflecting distinct erosional and depositional processes, with their chronology remaining relative and constrained by seismo-stratigraphic correlation. The oldest, Generation 1, forms linear V-shaped valleys interpreted as Weichselian subglacial channel systems formed by meltwater erosion, probably during a pre-Last Glacial Maximum (LGM) glaciation. Generation 2 comprises a U-shaped depression carved by direct ice-marginal processes probably at the LGM, and likely infilled with glaciolacustrine sediments. The youngest, Generation 3 forms a complex network of sinuous, branching channels that locally reoccupy older incisions developed under fluvial, estuarine or tidal conditions upon deglaciation during the late Weichselian to early Holocene. Together, these features record repeated phases of erosion and infill, progressing from subglacial to ice-marginal and finally subaerial settings, defining a three-stage landscape evolution from the Weichselian glaciation to the Holocene. The integrated approach applied here enables detailed mapping and an objective classification of buried incisions, revealing a more intricate valley network than previously documented. It demonstrates that landscape transformation in the southern North Sea was controlled by complex subglacial conditions, meltwater routing, ice-margin dynamics and post-glacial drainage reorganisation.

All data in the Integrated Marine Information System (IMIS) is subject to the VLIZ privacy policy Top | Authors 


If any information here appears to be incorrect, please contact us
Back to Register of Resources
 
Quick links

MarBEF WIKI

Erasmus Mundus Master of Science in Marine Biodiversity and Conservation (EMBC)
Outreach

Science
Responsive Mode Programme (RMP) - Marie Nordstrom, copyright Aspden Rebecca

WoRMS
part of WoRMS logo

ERMS 2.0
Epinephelus marginatus Picture: JG Harmelin

EurOBIS

Geographic System

Datasets

 


Web site hosted and maintained by Flanders Marine Institute (VLIZ) - Contact data-at-marbef.org