Basin structure and prospectivity of the NE Atlantic volcanic rifted margin: cross-border examples from the Faroe–Shetland, Møre and Southern Vøring basins
暂无分享,去创建一个
S. Planke | D. Jerram | J. Faleide | R. Myklebust | B. Bellwald | D. Jolley | L. Gernigon | B. Kjølhamar | D. Zastrozhnov | M. Abdelmalak | B. Manton | J. Millett | Alex Birch-Hawkins | F. Walker | J. Halliday | Dwarika Maharjan
[1] M. Stoker,et al. Crustal fragmentation, magmatism, and the diachronous opening of the Norwegian-Greenland Sea , 2020, Earth-Science Reviews.
[2] R. Holdsworth,et al. The Iceland Microcontinent and a continental Greenland-Iceland-Faroe Ridge , 2019, Earth-Science Reviews.
[3] M. Stewart,et al. Paleogene volcanic rocks in the northern Faroe–Shetland Basin and Møre Marginal High: understanding lava field stratigraphy , 2019, Geological Society, London, Special Publications.
[4] N. Schofield,et al. Modeling petroleum expulsion in sedimentary basins: The importance of igneous intrusion timing and basement composition , 2019, Geology.
[5] S. Planke,et al. Breakup volcanism and plate tectonics in the NW Atlantic , 2019, Tectonophysics.
[6] S. Planke,et al. The pre-breakup stratigraphy and petroleum system of the Southern Jan Mayen Ridge revealed by seafloor sampling , 2019, Tectonophysics.
[7] L. Geoffroy,et al. Magmatic ocean-continent transitions , 2019, Marine and Petroleum Geology.
[8] J. Malley,et al. Volcanic constraints on the unzipping of Africa from South America: Insights from new geochronological controls along the Angola margin , 2019, Tectonophysics.
[9] M. Urlaub,et al. NE Atlantic continental slope stability from a numerical modeling perspective , 2019, Quaternary Science Reviews.
[10] M. Huuse,et al. Characterization of Shallow Hydrocarbon Accumulations in the Central North Sea , 2018, 80th EAGE Conference and Exhibition 2018.
[11] E. Miramontes,et al. Reservoir Potential in Contourites: Evidence of Coarse-grained Contourite Facies in the Mozambique Margin , 2018, 80th EAGE Conference and Exhibition 2018.
[12] I. Skjærpe,et al. Developing Viper-Kobra: Maximizing Recovery by Exploiting the Unique Characteristics of the Sand Injectite Environment , 2018, 80th EAGE Conference and Exhibition 2018.
[13] O. Olesen,et al. Deep structure of the Mid-Norwegian continental margin (the Vøring and Møre basins) according to 3-D density and magnetic modelling , 2018 .
[14] R. Hamilton,et al. Hydrothermal vents and seismic anomalies: implications for the petroleum system NE of Shetland , 2018, Petroleum Geoscience.
[15] S. Planke,et al. Cretaceous‐Paleocene Evolution and Crustal Structure of the Northern Vøring Margin (Offshore Mid‐Norway): Results from Integrated Geological and Geophysical Study , 2018 .
[16] A. Hartley,et al. Controls on the distribution of volcanism and intra-basaltic sediments in the Cambo–Rosebank region, West of Shetland , 2018, Petroleum Geoscience.
[17] H. Sejrup,et al. The last deglaciation of the Norwegian Channel – geomorphology, stratigraphy and radiocarbon dating , 2018 .
[18] Richard J. Brown,et al. Igneous intrusions in the Faroe Shetland basin and their implications for hydrocarbon exploration; new insights from well and seismic data , 2017 .
[19] J. Faleide,et al. Tectonic evolution and extension at the Møre Margin – Offshore mid-Norway , 2017 .
[20] R. Hillis,et al. A rift-to-drift record of vertical crustal motions in the Faroe–Shetland Basin, NW European margin: establishing constraints on NE Atlantic evolution , 2017, Journal of the Geological Society.
[21] S. Planke,et al. The T‐Reflection and the Deep Crustal Structure of the Vøring Margin, Offshore mid‐Norway , 2017 .
[22] C. Berndt,et al. Igneous seismic geomorphology of buried lava fields and coastal escarpments on the Vøring volcanic rifted margin , 2017 .
[23] John Millett,et al. Geochemical stratigraphy and correlation within large igneous provinces: The final preserved stages of the Faroe Islands Basalt Group , 2017 .
[24] S. Chakraborty,et al. Introduction to special section: Seismic inversion — Conventional seismic impedance inversion and advanced seismic inversion techniques: Developments, workflow, and case studies , 2017 .
[25] K. Ogata,et al. Effects of igneous intrusions on the petroleum system: a review , 2017 .
[26] S. Planke,et al. Modelling hydrothermal venting in volcanic sedimentary basins: Impact on hydrocarbon maturation and paleoclimate , 2017 .
[27] S. Planke,et al. Upper Paleocene ultramafic igneous rocks offshore mid-Norway: Reinterpretation of the Vestbrona Formation as a sill complex , 2017 .
[28] S. Planke,et al. Mafic intrusions, hydrothermal venting, and the basalt-sediment transition: Linking onshore and offshore examples from the North Atlantic igneous province , 2017 .
[29] I. Lecomte,et al. 3D structure and formation of hydrothermal vent complexes at the Paleocene-Eocene transition, the Møre Basin, mid-Norwegian margin , 2017 .
[30] D. Karlsen,et al. Ages of Norwegian oils and bitumen based on age-specific biomarkers , 2017, Petroleum Geoscience.
[31] W. McCaffrey,et al. Hybrid event beds dominated by transitional‐flow facies: character, distribution and significance in the Maastrichtian Springar Formation, north‐west Vøring Basin, Norwegian Sea , 2017 .
[32] O. Galland,et al. Mechanisms of overburden deformation associated with the emplacement of the Tulipan sill, mid-Norwegian margin , 2017 .
[33] N. Schofield,et al. Stratigraphic overview of Palaeogene tuffs in the Faroe–Shetland Basin, NE Atlantic Margin , 2017, Journal of the Geological Society.
[34] J. Underhill,et al. Challenges of future exploration within the UK Rockall Basin , 2017 .
[35] S. Gradmann,et al. Deep structure of the Lofoten‐Vesterålen segment of the Mid‐Norwegian continental margin and adjacent areas derived from 3‐D density modeling , 2017 .
[36] David J. Brown,et al. Regional magma plumbing and emplacement mechanisms of the Faroe‐Shetland Sill Complex: implications for magma transport and petroleum systems within sedimentary basins , 2017 .
[37] David J. Brown,et al. 3D seismic imaging of the shallow plumbing system beneath the Ben Nevis Monogenetic Volcanic Field: Faroe–Shetland Basin , 2017, Journal of the Geological Society.
[38] S. Poppitt,et al. The influence of volcanic rocks on the characterization of Rosebank Field – new insights from ocean-bottom seismic data and geological analogues integrated through interpretation and modelling , 2016 .
[39] J. Dowdeswell,et al. Quaternary evolution of the northern North Sea margin through glacigenic debris‐flow and contourite deposition , 2016 .
[40] S. Planke,et al. The geology of offshore drilling through basalt sequences: Understanding operational complications to improve efficiency , 2016 .
[41] C. Schiffer,et al. Wilson cycle passive margins: Control of orogenic inheritance on continental breakup , 2016 .
[42] P. Osmundsen,et al. Architecture of the distal and outer domains of the Mid-Norwegian rifted margin: Insights from the Rån-Gjallar ridges system , 2016 .
[43] A. Spencer,et al. Petroleum systems and results of exploration on the Atlantic margins of the UK, Faroes & Ireland: what have we learnt? , 2016 .
[44] P. Guarnieri,et al. Exploration challenges along the North Atlantic volcanic margins: the intra-volcanic sandstone play in subsurface and outcrop , 2016 .
[45] N. Taylor,et al. Beyond Laggan–Tormore: maximizing economic recovery from gas infrastructure West of Shetland , 2016 .
[46] K. Piepjohn,et al. The Eurekan deformation in the Arctic: an outline , 2016, Journal of the Geological Society.
[47] J. Hopper,et al. Controls on the location of compressional deformation on the NW European margin , 2016, Special Publications.
[48] M. Stoker. Cretaceous tectonostratigraphy of the Faroe–Shetland region , 2016, Scottish Journal of Geology.
[49] S. Planke,et al. The development of volcanic sequences at rifted margins: New insights from the structure and morphology of the Vøring Escarpment, mid‐Norwegian Margin , 2016 .
[50] S. Planke,et al. Pre-breakup magmatism on the Vøring Margin: Insight from new sub-basalt imaging and results from Ocean Drilling Program Hole 642E , 2016 .
[51] John Millett,et al. Frontier exploration and the North Atlantic Igneous Province: new insights from a 2.6 km offshore volcanic sequence in the NE Faroe–Shetland Basin , 2015, Journal of the Geological Society.
[52] Tetsuya Fujii,et al. Permeability of sediment cores from methane hydrate deposit in the Eastern Nankai Trough , 2015 .
[53] S. Planke,et al. Contact metamorphism and thermogenic gas generation in the Vøring and Møre basins, offshore Norway, during the Paleocene–Eocene thermal maximum , 2015, Journal of the Geological Society.
[54] A. Blischke,et al. Conjugate volcanic rifted margins, seafloor spreading, and microcontinent: Insights from new high‐resolution aeromagnetic surveys in the Norway Basin , 2015 .
[55] B. O. Hjelstuen,et al. North Atlantic Ocean deep-water processes and depositional environments: A study of the Cenozoic Norway Basin , 2015 .
[56] Andrew Taylor,et al. The discovery of the Barmer Basin, Rajasthan, India, and its petroleum geology , 2015 .
[57] S. Planke,et al. Geophysics and Remote Sensing , 2015 .
[58] G. Manatschal,et al. Lower crustal bodies in the Møre volcanic rifted margin: Geophysical determination and geological implications , 2014 .
[59] A. Hartley,et al. Lava–Sediment Interaction and Drainage-System Development In A Large Igneous Province: Columbia River Flood Basalt Province, Washington State, U.S.A. , 2014 .
[60] J. Laberg,et al. Origin of shallow submarine mass movements and their glide planes—Sedimentological and geotechnical analyses from the continental slope off northern Norway , 2014 .
[61] F. Riis,et al. Oligocene to Lower Pliocene deposits of the Norwegian continental shelf, Norwegian Sea, Svalbard, Denmark and their relation to the uplift of Fennoscandia: A synthesis , 2014 .
[62] R. Trice. Basement exploration, West of Shetlands: progress in opening a new play on the UKCS , 2014 .
[63] D. Mudge. Regional controls on Lower Tertiary sandstone distribution in the North Sea and NE Atlantic margin basins , 2014 .
[64] N. Loizou. Success in exploring for reliable, robust Paleocene traps west of Shetland , 2014 .
[65] K. van Ojik,et al. Interplay of fan-fringe reservoir deterioration and hydrodynamic aquifer: understanding the margins of gas development in the Ormen Lange Field , 2014 .
[66] C. Jackson,et al. Diachronous sub‐volcanic intrusion along deep‐water margins: insights from the Irish Rockall Basin , 2014 .
[67] C. Jackson,et al. Geometry and controls on the development of igneous sill–related forced folds: A 2-D seismic reflection case study from offshore southern Australia , 2013 .
[68] M. Stoker,et al. A record of Eocene (Stronsay Group) sedimentation in BGS borehole 99/3, offshore NW Britain: Implications for early post-break-up development of the Faroe–Shetland Basin , 2013 .
[69] C. Jackson,et al. Source‐to‐sink analysis of ancient sedimentary systems using a subsurface case study from the Møre‐Trøndelag area of southern Norway: Part 2 – sediment dispersal and forcing mechanisms , 2013 .
[70] N. Schofield,et al. Development of intra-basaltic lava-field drainage systems within the Faroe–Shetland Basin , 2013 .
[71] Michael Smith,et al. The potential role of igneous intrusions on hydrocarbon migration, West of Shetland , 2013 .
[72] P. Osmundsen,et al. Structural comparison of archetypal Atlantic rifted margins: A review of observations and concepts , 2013 .
[73] T. Lorenson,et al. The Global Occurrence of Natural Gas Hydrate , 2013 .
[74] Bin Wang,et al. 3D imaging from 2D seismic data, an enhanced methodology , 2013 .
[75] M. Huuse,et al. Glaciogenic reservoirs and hydrocarbon systems: an introduction , 2012 .
[76] Y. Podladchikov,et al. Devolatilization‐induced pressure build‐up: Implications for reaction front movement and breccia pipe formation , 2012 .
[77] T. Yamasaki,et al. The Norway Basin revisited: From continental breakup to spreading ridge extinction , 2012 .
[78] H. Sejrup,et al. Quaternary denudation of southern Fennoscandia – evidence from the marine realm , 2012 .
[79] B. Bell,et al. The Staffa Lava Formation: graben-related volcanism, associated sedimentation and landscape character during the early development of the Palaeogene Mull Lava Field, NW Scotland , 2012 .
[80] D. Jerram,et al. Application of seismic and sequence stratigraphic concepts to a lava‐fed delta system in the Faroe‐Shetland Basin, UK and Faroes , 2012 .
[81] R. Bøe,et al. Stratigraphic development of the south Vøring margin (Mid-Norway) since early Cenozoic time and its influence on subsurface fluid flow , 2011 .
[82] E. Lundin,et al. Hyperextension, serpentinization, and weakening: A new paradigm for rifted margin compressional deformation , 2011 .
[83] R. Bøe,et al. Late Cenozoic geological development of the south Vøring margin, mid-Norway , 2010 .
[84] J. Cartwright. Regionally extensive emplacement of sandstone intrusions: a brief review , 2010 .
[85] G. Westbrook,et al. Evidence from three‐dimensional seismic tomography for a substantial accumulation of gas hydrate in a fluid‐escape chimney in the Nyegga pockmark field, offshore Norway , 2010 .
[86] Øyvind Hammer,et al. Norwegian Offshore Stratigraphic Lexicon (NORLEX) , 2010 .
[87] S. Planke,et al. Zircon dating ties NE Atlantic sill emplacement to initial Eocene global warming , 2010, Journal of the Geological Society.
[88] P. Nuttall,et al. Sub-basalt hydrocarbon prospectivity in the Rockall, Faroe–Shetland and Møre basins, NE Atlantic , 2010 .
[89] H. Fossen. Extensional tectonics in the North Atlantic Caledonides: a regional view , 2010 .
[90] Jan Inge Faleide,et al. Geology of the Norwegian Continental Shelf , 2010 .
[91] D. Jerram,et al. Flood basalt facies from borehole data: implications for prospectivity and volcanology in volcanic rifted margins , 2009 .
[92] J. Imber,et al. A critical analysis of the structure and tectonic significance of rift-oblique lineaments (‘transfer zones') in the Mesozoic–Cenozoic succession of the Faroe–Shetland Basin, NE Atlantic margin , 2009, Journal of the Geological Society.
[93] C. Gaina,et al. Palaeocene–Recent plate boundaries in the NE Atlantic and the formation of the Jan Mayen microcontinent , 2009, Journal of the Geological Society.
[94] R. Baudino,et al. Modeling an atypical petroleum system: A case study of hydrocarbon generation, migration and accumulation related to igneous intrusions in the Neuquen Basin, Argentina , 2009 .
[95] T. Yamasaki,et al. Styles of lithospheric extension controlled by underplated mafic bodies , 2009 .
[96] R. Hobbs,et al. Understanding the offshore flood basalt sequence using onshore volcanic facies analogues: an example from the Faroe–Shetland basin , 2009, Geological Magazine.
[97] L. Rise,et al. Geological evolution of the Norwegian continental shelf between 61ºN and 68ºN during the last 3 million years , 2009 .
[98] D. Jolley,et al. Syn-eruption vegetation dynamics, paleosurfaces and structural controls on lava field vegetation: An example from the Palaeogene Staffa Formation, Mull Lava Field, Scotland☆ , 2009 .
[99] D. Jolley,et al. A revised lithostratigraphic nomenclature for the Palaeogene Faroe Islands Basalt Group, NE Atlantic Ocean , 2008, Earth and Environmental Science Transactions of the Royal Society of Edinburgh.
[100] J. Ogg,et al. The Concise Geologic Time Scale , 2008 .
[101] Olav,et al. Structure and evolution of the continental margin off Norway and the Barents Sea , 2008 .
[102] R. Mjelde,et al. Magmatic and tectonic evolution of the North Atlantic , 2008, Journal of the Geological Society.
[103] J. Gilotti,et al. Geometry, kinematics, and timing of extensional faulting in the Greenland Caledonides—A synthesis , 2008 .
[104] C. Pascal,et al. Potential mechanisms for the genesis of Cenozoic domal structures on the NE Atlantic margin: pros, cons and some new ideas , 2008 .
[105] E. Fugelli,et al. Delineating confined slope turbidite systems offshore mid-Norway: The Cretaceous deep-marine Lysing Formation , 2007 .
[106] R. Pedersen,et al. Crustal - mantle melt interactions during continental breakup at the Early Paleocene Voring Plateau, North Atlantic igneous province , 2007 .
[107] J. W. Gallagher,et al. Exploring below the basalt, offshore Faroes: a case history of sub-basalt imaging , 2007, Petroleum Geoscience.
[108] C. Clark,et al. Extreme sediment and ice discharge from marine-based ice streams: New evidence from the North Sea , 2007 .
[109] A. Morton,et al. Understanding basin sedimentary provenance: evidence from allied phytogeographic and heavy mineral analysis of the Palaeocene of the NE Atlantic , 2007, Journal of the Geological Society.
[110] A. Viana,et al. The economic importance of contourites , 2007, Geological Society, London, Special Publications.
[111] J. Parnell,et al. Hydrocarbon generation modelling in a multiple rifted and volcanic basin: a case study in the Foinaven Sub-basin, Faroe–Shetland Basin, UK Atlantic margin , 2006, Scottish Journal of Geology.
[112] S. Planke,et al. A moderate melting model for the Voring margin (Norway) based on structural observations and a thermo-kinematical modelling: Implication for the meaning of the lower crustal bodies , 2006 .
[113] Andrew C. Morton,et al. Provenance of Late Cretaceous to Paleocene submarine fan sandstones in the Norwegian Sea: Integration of heavy mineral, mineral chemical and zircon age data , 2005 .
[114] J. Laberg,et al. Neogene stratigraphy and the sedimentary and oceanographic development of the NW European Atlantic margin , 2005 .
[115] S. Bergman,et al. Palaeogene igneous rocks reveal new insights into the geodynamic evolution and petroleum potential of the Rockall Trough, NE Atlantic Margin , 2005 .
[116] T. Kjennerud,et al. Cretaceous to Palaeogene 3D palaeobathymetry and sedimentation in the Vøring Basin, Norwegian Sea , 2005 .
[117] O. Martinsen,et al. Cretaceous and Palaeogene turbidite systems in the North Sea and Norwegian Sea Basins: source, staging area and basin physiography controls on reservoir development , 2005 .
[118] Andrew Hurst,et al. Sand injectites: an emerging global play in deep-water clastic environments , 2005 .
[119] T. M. Rasmussen,et al. Seismic characteristics and distribution of volcanic intrusions and hydrothermal vent complexes in the Vøring and Møre basins , 2005 .
[120] P. Bryn,et al. The glacial North Sea Fan, southern Norwegian Margin: architecture and evolution from the upper continental slope to the deep-sea basin , 2005 .
[121] H. Johnson,et al. Controls on the structure and evolution of the NE Atlantic margin revealed by regional potential field imaging and 3D modelling , 2005 .
[122] F. Surlyk,et al. Upper cretaceous basin-floor fans in the Vøring Basin, Mid Norway shelf , 2005 .
[123] L. Rise,et al. Large-scale development of the mid-Norwegian margin during the last 3 million years , 2005 .
[124] A. Malthe-Sørenssen,et al. Release of methane from a volcanic basin as a mechanism for initial Eocene global warming , 2004, Nature.
[125] E. Eide,et al. The Middle to Late Devonian Høybakken detachment, central Norway: 40Ar–39Ar evidence for prolonged late/post-Scandian extension and uplift , 2004, Geological Magazine.
[126] P. Flemings,et al. Critical pressure and multiphase flow in Blake Ridge gas hydrates , 2003 .
[127] J. Mienert,et al. Geological controls on the Storegga gas-hydrate system of the mid-Norwegian continental margin , 2003 .
[128] S. Planke,et al. Extension, crustal structure and magmatism at the outer Vøring Basin, Norwegian margin , 2003, Journal of the Geological Society.
[129] J. Mienert,et al. Polygonal fault systems on the mid-Norwegian margin: a long-term source for fluid flow , 2003, Geological Society, London, Special Publications.
[130] S. Schutter. Hydrocarbon occurrence and exploration in and around igneous rocks , 2003, Geological Society, London, Special Publications.
[131] J. Laberg,et al. Late Quaternary glacial development of the mid-Norwegian margin—65 to 68°N , 2002 .
[132] R. Færseth,et al. Cretaceous evolution in the Norwegian Sea—a period characterized by tectonic quiescence , 2002 .
[133] L. Lonergan,et al. Mechanisms and controls on the formation of sand intrusions , 2002, Journal of the Geological Society.
[134] S. Cloetingh,et al. Basin migration caused by slow lithospheric extension , 2002 .
[135] M. Cannat,et al. Magnetic properties of variably serpentinized abyssal peridotites , 2002 .
[136] E. Lundin,et al. Mid-Cenozoic post-breakup deformation in the ‘passive’ margins bordering the Norwegian–Greenland Sea , 2002 .
[137] J. Faleide,et al. Continental margin off Norway 62–75°N: Palaeogene tectono-magmatic segmentation and sedimentation , 2002, Geological Society, London, Special Publications.
[138] D. Jolley,et al. The evolution of the North Atlantic Igneous Province and the opening of the NE Atlantic rift , 2002, Geological Society, London, Special Publications.
[139] Gerald R. Dickens,et al. Modeling the Global Carbon Cycle with a Gas Hydrate Capacitor: Significance for the Latest Paleocene Thermal Maximum , 2013 .
[140] G. Richardsen,et al. The distribution of Cretaceous and Paleocene deep-water reservoirs in the Norwegian Sea basins , 2001, Petroleum Geoscience.
[141] R. S. White,et al. The structure of the Faeroe–Shetland Trough from integrated deep seismic and potential field modelling , 2001, Journal of the Geological Society.
[142] C. Berndt,et al. Seismic volcanostratigraphy of the Norwegian Margin: constraints on tectonomagmatic break-up processes , 2001, Journal of the Geological Society.
[143] F. Surlyk,et al. Cretaceous faulting and associated coarse-grained marine gravity flow sedimentation, traill ø, east greenland , 2001 .
[144] Robert W. Williams,et al. Sedimentary environments offshore norway — an overview , 2001 .
[145] S. Planke,et al. Seismic volcanostratigraphy of large-volume basaltic extrusive complexes on rifted margins , 2000 .
[146] H. Brekke. The tectonic evolution of the Norwegian Sea Continental Margin with emphasis on the Vøring and Møre Basins , 2000, Geological Society, London, Special Publications.
[147] H. Harper,et al. Evolution of extensional styles at the southern termination of the Nordland Ridge, Mid-Norway: a response to variations in coupling above Triassic salt , 1999 .
[148] E. Lamers,et al. The Paleocene deepwater sandstone play West of Shetland , 1999 .
[149] S. Dahlgren,et al. The prospectivity of the Vøring and Møre basins on the Norwegian Sea continental margin , 1999 .
[150] E. Lundin,et al. Principal tectonic events in the evolution of the northwest European Atlantic margin , 1999 .
[151] R. Marten,et al. The first deepwater well in Norway and its implications for the Upper Cretaceous Play, Vøring Basin , 1999 .
[152] D. Roberts,et al. Palaeozoic to Tertiary rift and basin dynamics: mid-Norway to the Bay of Biscay – a new context for hydrocarbon prospectivity in the deep water frontier , 1999 .
[153] J. Iliffe,et al. The importance of fluid pressures and migration to the hydrocarbon prospectivity of the Faeroe–Shetland White Zone , 1999 .
[154] W. Fjeldskaar,et al. AAPG/Datapages Discovery Series No. 7, Multidimensional Basin Modeling, Chapter 6: Temperature and Maturity Effects of Magmatic Underplating in the Gjallar Ridge, Norwegian Sea , 1999 .
[155] H. Sejrup,et al. Glacigenic debris flows on the North Sea Trough Mouth Fan during ice stream maxima , 1998 .
[156] I. Scotchman,et al. The Jurassic petroleum system north and west of Britain: a geochemical oil-source correlation study , 1998 .
[157] S. Piasecki,et al. Petroleum geological investigations in East Greenland: project ‘Resources of the sedimentary basins of North and East Greenland’ , 1997 .
[158] D. Roberts,et al. Structural evolution of the Vøring Basin, Norway, during the Late Cretaceous and Palaeogene , 1997, Journal of the Geological Society.
[159] E. Lundin,et al. A tectonic model for the Norwegian passive margin with implications for the NE Atlantic: Early Cretaceous to break-up , 1997, Journal of the Geological Society.
[160] H. Sejrup,et al. Quaternary seismic stratigraphy of the North Sea Fan: glacially-fed gravity flow aprons, hemipelagic sediments, and large submarine slides , 1996 .
[161] H. Sejrup,et al. Quaternary erosion and depositional processes: western Norwegian fjords, Norwegian Channel and North Sea Fan , 1996, Geological Society, London, Special Publications.
[162] H. Johnson,et al. Early Tertiary evolution and sequence stratigraphy of the Faeroe-Shetland Basin: implications for hydrocarbon prospectivity , 1995, Geological Society, London, Special Publications.
[163] O. Eldholm,et al. North Atlantic volcanic margins: Dimensions and production rates , 1994 .
[164] K. Kvenvolden. Gas hydrates—geological perspective and global change , 1993 .
[165] C. D. Lucchese,et al. Pampo, Linguado, and Badejo fields: Their discoveries, appraisals, and early production systems. , 1983 .