Skip to Main Content
Skip Nav Destination
GEOREF RECORD

Rapid glacial sedimentation and overpressure in oozes causing large craters on the mid-Norwegian margin; integrated interpretation of the Naust, Kai and Brygge formations

Benjamin Bellwald, Ben Manton, Nina Lebedeva-Ivanova, Dmitry Zastrozhnov, Reidun Myklebust, Sverre Planke, Carl Fredrik Forsberg, Maarten Vanneste and Jacques Locat
Rapid glacial sedimentation and overpressure in oozes causing large craters on the mid-Norwegian margin; integrated interpretation of the Naust, Kai and Brygge formations (in Seismic geomorphology; data integration and palaeoenvironment reconstructions, A. M. W. Newton (editor), K. J. Andresen (editor), K. J. Blacker (editor), R. Harding (editor) and E. Lebas (editor))
Special Publication - Geological Society of London (2024) 525: 77-109

Abstract

Along continental margins with rapid sedimentation, overpressure may build up in porous and compressible sediments. Large-scale release of such overpressure has major implications for fluid migration and slope stability. Here, we study if the widespread crater-mound-shaped structures in the subsurface along the mid-Norwegian continental margin are caused by overpressure that accumulated within high-compressibility oozes sealed by low-permeability glacial muds. We interpret 56,000 km (super 2) of 3D and 150,000 km (super 2) of 2D-cubed seismic data in the Norwegian Sea, combining horizon picking, well ties and seismic geomorphological analyses of the crater-mound landforms. Along the mid-Norwegian margin, the base of the glacially influenced sediments abruptly deepens to form 28 craters with typical depths of c. 100 m, areal extents of up to 5130 km (super 2) and volumes of up to 820 km (super 3) . Mounds are observed in the vicinity of the craters at several stratigraphic levels above the craters. We present a new model for the formation of the craters and mounds where the mounds consist of remobilized oozes evacuated from the craters. In our model, repeated and overpressure-driven sediment failure is interpreted to cause the crater-mound structures, as opposed to erosive megaslides. Seismic geomorphological analyses suggest that ooze remobilization occurred as an abrupt energetic and extrusive process. The results also suggest that rapidly deposited, low-permeability and low-porosity glacial sediments seal overpressure that originated from fluids being expelled from the underlying high-permeability and high-compressibility biosiliceous oozes.


ISSN: 0305-8719
EISSN: 2041-4927
Serial Title: Special Publication - Geological Society of London
Serial Volume: 525
Title: Rapid glacial sedimentation and overpressure in oozes causing large craters on the mid-Norwegian margin; integrated interpretation of the Naust, Kai and Brygge formations
Title: Seismic geomorphology; data integration and palaeoenvironment reconstructions
Author(s): Bellwald, BenjaminManton, BenLebedeva-Ivanova, NinaZastrozhnov, DmitryMyklebust, ReidunPlanke, SverreForsberg, Carl FredrikVanneste, MaartenLocat, Jacques
Author(s): Newton, A. M. W.editor
Author(s): Andresen, K. J.editor
Author(s): Blacker, K. J.editor
Author(s): Harding, R.editor
Author(s): Lebas, E.editor
Affiliation: Volcanic Basin Energy Research, Oslo, Norway
Affiliation: Queen's University Belfast, Belfast, United Kingdom
Pages: 77-109
Published: 2024
Text Language: English
Publisher: Geological Society of London, London, United Kingdom
References: 106
Accession Number: 2024-026970
Categories: Applied geophysics
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus. incl. 1 table, sects.
N62°00'00" - N80°00'00", W25°00'00" - E15°00'00"
N58°00'00" - N71°00'00", E04°00'00" - E31°00'00"
Secondary Affiliation: TGS, NOR, NorwayNGI, NOR, NorwayUniversite Laval, CAN, Canada
Country of Publication: United Kingdom
Secondary Affiliation: GeoRef, Copyright 2025, American Geosciences Institute. Reference includes data from The Geological Society, London, London, United Kingdom
Update Code: 202416

or Create an Account

Close Modal
Close Modal