Applications of digital outcrop models: two fluvial case studies from the Triassic Wolfville Fm., Canada and Oukaimeden Sandstone Fm., Morocco
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David Hodgetts | D. Hodgetts | J. Redfern | I. Fabuel‐Perez | Jonathan Redfern | X. van Lanen | I. Fabuel-Perez | Xavier M. T. van Lanen
[1] Clare E. Bond,et al. Knowledge transfer in a digital world: field data acquisition, uncertainty, visualization, and data management , 2007 .
[2] David Hodgetts,et al. Structural geology and 4D evolution of a half-graben: New digital outcrop modelling techniques applied to the Nukhul half-graben, Suez rift, Egypt , 2009 .
[3] S. Buckley,et al. Terrestrial laser scanning in geology: data acquisition, processing and accuracy considerations , 2008, Journal of the Geological Society.
[4] Peter J. Fawcett,et al. Chronotopographic analysis directly from point-cloud data: A method for detecting small, seasonal hillslope change, Black Mesa Escarpment, NE Arizona , 2007 .
[5] G. Soreghan,et al. Outcrop-based reservoir characterization: A composite phylloid-algal mound, western Orogrande basin (New Mexico) , 2002 .
[6] A. Hartley,et al. Large-Scale Alluvial Architecture and Correlation in a Triassic Pebbly Braided River System, Lower Wolfville Formation (Fundy Basin, Nova Scotia, Canada) , 2009 .
[7] K. Verwer. Spatial models of carbonate platform anatomy , 2008 .
[8] J. Petit,et al. Synsedimentary faulting and palaeocurrent patterns in the Triassic sandstones of the High Atlas (Morocco) , 1986 .
[9] K. Verwer,et al. Controls and predictability of carbonate facies architecture in a Lower Jurassic three‐dimensional barrier‐shoal complex (Djebel Bou Dahar, High Atlas, Morocco) , 2009 .
[10] David Hodgetts,et al. A new approach for outcrop characterization and geostatistical analysis of a low-sinuosity fluvial-dominated succession using digital outcrop models: Upper Triassic Oukaimeden Sandstone Formation, central High Atlas, Morocco , 2009 .
[11] J. F. Hubert,et al. Sedimentology of braided-river deposits in Upper Triassic Wolfville redbeds, southern shore of Cobequid Bay, Nova Scotia, Canada , 1988 .
[12] John F. Ferguson,et al. Outcrop fracture characterization using terrestrial laser scanners: Deep-water Jackfork sandstone at big rock quarry, Arkansas , 2008 .
[13] John A. Howell,et al. From outcrop to reservoir simulation model: Workflow and procedures , 2007 .
[14] N. Tyler,et al. The three-dimensional facies architecture of terrigenous clastic sediments and its implications for hydrocarbon discovery and recovery , 1991 .
[15] Duncan Irving,et al. Glacial geomorphological mapping of Coire Mhic Fhearchair, NW Scotland: The contribution of a high-resolution ground based LiDAR survey , 2008 .
[16] X. Janson,et al. Three‐dimensional modelling and sequence stratigraphy of a carbonate ramp‐to‐shelf transition, Permian Upper San Andres Formation , 2008 .
[17] K. Verwer,et al. Evolution of a High-Relief Carbonate Platform Slope Using 3D Digital Outcrop Models: Lower Jurassic Djebel Bou Dahar, High Atlas, Morocco , 2009 .
[18] J. F. Hubert,et al. Eolian Sandstones in Upper Triassic-Lower Jurassic Red Beds of the Fundy Basin, Nova Scotia , 1984 .
[19] Richard R. Jones,et al. Characterization of fluvial architectural elements using a three-dimensional outcrop data set: Escanilla braided system, South-Central Pyrenees, Spain , 2007 .
[20] David Hodgetts,et al. LiDAR in the Environmental Sciences: Geological Applications , 2009 .
[21] Jamie K. Pringle,et al. Virtual outcrop models of petroleum reservoir analogues: a review of the current state-of-the-art , 2006 .
[22] D. Hodgetts,et al. Sedimentology of an intra-montane rift-controlled fluvial dominated succession: The Upper Triassic Oukaimeden Sandstone Formation, Central High Atlas, Morocco , 2009 .
[23] P. Olsen. STRATIGRAPHIC RECORD OF THE EARLY MESOZOIC BREAKUP OF PANGEA IN THE LAURASIA-GONDWANA RIFT SYSTEM , 1997 .
[24] M. Slater,et al. Vertical and lateral building of river sandstone bodies, Ebro Basin, Spain , 1979, Journal of the Geological Society.
[25] Olivier Dubrule,et al. Achievements and challenges in petroleum geostatistics , 2001, Petroleum Geoscience.
[26] R. Fensome,et al. The Triassic-Jurassic Fundy Basin, eastern Canada: regional setting, stratigraphy and hydrocarbon potential , 1996 .
[27] J. Howell,et al. Aeolian grain flow architecture: hard data for reservoir models and implications for red bed sequence stratigraphy , 2001, Petroleum Geoscience.
[28] Shuhab D. Khan,et al. Lidar mapping of faults in Houston, Texas, USA , 2008 .
[29] W. Manspeizer. Chapter 3 - Triassic – Jurassic rifting and opening of the Atlantic: An overview , 1988 .
[30] G. McMechan,et al. Detailed internal architecture of a fluvial channel sandstone determined from outcrop, cores, and 3-D ground-penetrating radar: Example from the middle Cretaceous Ferron Sandstone, east-central Utah , 2001 .
[31] C. Kerans,et al. Architectural Characterization and Three-Dimensional Modeling of a Carbonate Channel–Levee Complex: Permian San Andres Formation, Last Chance Canyon, New Mexico, U.S.A. , 2007 .
[32] W. Manspeizer,et al. Separation of Morocco and eastern North America: A Triassic-Liassic stratigraphic record , 1978 .
[33] N. Benaouiss,et al. Rift-controlled fluvial/tidal transitional series in the Oukai¨meden Sandstones, High Atlas of Marrakesh (Morocco) , 1996 .
[34] Michael S. Bahorich,et al. 3-D seismic discontinuity for faults and stratigraphic features; the coherence cube , 1995 .
[35] Karl T. Bates,et al. High-resolution LiDAR and photogrammetric survey of the Fumanya dinosaur tracksites (Catalonia): implications for the conservation and interpretation of geological heritage sites , 2008, Journal of the Geological Society.
[36] Charles Kerans,et al. Three-dimensional geological and synthetic seismic model of Early Permian redeposited basinal carbonate deposits, Victorio Canyon, west Texas , 2007 .
[37] J. F. Hubert,et al. Eolian dune field of Late Triassic age, Fundy Basin, Nova Scotia , 1980 .
[38] C. Kerans,et al. Digital Outcrop Models: Applications of Terrestrial Scanning Lidar Technology in Stratigraphic Modeling , 2005 .
[39] I. Trinks,et al. Unlocking the spatial dimension: digital technologies and the future of geoscience fieldwork , 2005, Journal of the Geological Society.
[40] John P. Grotzinger,et al. Digital characterization of thrombolite-stromatolite reef distribution in a carbonate ramp system (terminal Proterozoic, Nama Group, Namibia) , 2005 .
[41] Hierarchical geocellular facies modelling of a turbidite reservoir analogue from the Eocene of the Ainsa basin, NE Spain , 2006 .