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Shear margin moraine, mass transport deposits and soft beds revealed by high-resolution P-Cable three-dimensional seismic data in the Hoop area, Barents Sea

Benjamin Bellwald and Sverre Planke
Shear margin moraine, mass transport deposits and soft beds revealed by high-resolution P-Cable three-dimensional seismic data in the Hoop area, Barents Sea (in Subaqueous mass movements and their consequences; assessing geohazards, environmental implications and economic significance of subaqueous landslides, D. G. Lintern (editor), D. C. Mosher (editor), Lorena G. Moscardelli (editor), P. T. Bobrowsky (editor), C. Campbell (editor), J. D. Chaytor (editor), J. J. Clague (editor), A. Georgiopoulou (editor), P. Lajeunesse (editor), Alexandre Normandeau (editor), David J. W. Piper (editor), M. Scherwath (editor), C. Stacey (editor) and Dominique Turmel (editor))
Special Publication - Geological Society of London (March 2018) 477 (1): 537-548

Abstract

High-resolution seismic data are powerful tools that can help the offshore industries to better understand the nature of the shallow subsurface and plan the development of vulnerable infrastructure. Submarine mass movements and shallow gas are among the most significant geohazards in petroleum prospecting areas. A variety of high-resolution geophysical datasets collected in the Barents Sea have significantly improved our knowledge of the shallow subsurface in recent decades. Here we use a c. 200 km (super 2) high-resolution P-Cable 3D seismic cube from the Hoop area, SW Barents Sea, to study a 20-65 m thick glacial package between the seabed and the Upper Regional Unconformity (URU) horizons. Intra-glacial reflections, not visible in conventional seismic reflection data, are well imaged. These reflections have been mapped in detail to better understand the glacial deposits and to assess their impact on seabed installations. A shear margin moraine, mass transport deposits and thin soft beds are examples of distinct units only resolvable in the P-Cable 3D seismic data. The top of the shear margin moraine is characterized by a positive amplitude reflection incised by glacial ploughmarks. Sedimentary slide wedges and shear bands are characteristic sedimentary features of the moraine. A soft reflection locally draping the URU is interpreted as a coarser grained turbidite bed related to slope failure along the moraine. The bed is possibly filled with gas. Alternatively, this negative amplitude reflection represents a thin, soft bed above the URU. This study shows that P-Cable 3D data can be used successfully to identify and map the external and internal structures of ice stream shear margin moraines and that this knowledge is useful for site-survey investigations.


ISSN: 0305-8719
Coden: GSLSBW
Serial Title: Special Publication - Geological Society of London
Serial Volume: 477
Serial Issue: 1
Title: Shear margin moraine, mass transport deposits and soft beds revealed by high-resolution P-Cable three-dimensional seismic data in the Hoop area, Barents Sea
Title: Subaqueous mass movements and their consequences; assessing geohazards, environmental implications and economic significance of subaqueous landslides
Author(s): Bellwald, BenjaminPlanke, Sverre
Author(s): Lintern, D. G.editor
Author(s): Mosher, D. C.editor
Author(s): Moscardelli, Lorena G.editor
Author(s): Bobrowsky, P. T.editor
Author(s): Campbell, C.editor
Author(s): Chaytor, J. D.editor
Author(s): Clague, J. J.editor
Author(s): Georgiopoulou, A.editor
Author(s): Lajeunesse, P.editor
Author(s): Normandeau, Alexandreeditor
Author(s): Piper, David J. W.editor
Author(s): Scherwath, M.editor
Author(s): Stacey, C.editor
Author(s): Turmel, Dominiqueeditor
Affiliation: Volcanic Basin Petroleum Research, Oslo, Norway
Pages: 537-548
Published: 20180328
Text Language: English
Publisher: Geological Society of London, London, United Kingdom
References: 60
Accession Number: 2018-045507
Categories: GeomorphologyApplied geophysics
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus. incl. sects., sketch map
N73°00'00" - N74°00'00", E22°00'00" - E26°00'00"
Secondary Affiliation: University of Oslo, NOR, Norway
Source Note: Online First
Country of Publication: United Kingdom
Secondary Affiliation: GeoRef, Copyright 2020, American Geosciences Institute. Reference includes data from The Geological Society, London, London, United Kingdom
Update Code: 201824
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