Facies associations, detrital clay grain coats and mineralogical characterization of the Gironde estuary tidal bars: A modern analogue for deeply buried estuarine sandstone reservoirs
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D. Beaufort | P. Patrier | R. Bourillot | É. Portier | B. Brigaud | I. Jalón-Rojas | S. Miska | H. Derriennic | Maxime Virolle | Hugues Féniès
[1] R. H. Worden,et al. Compositional variation in modern estuarine sands: Predicting major controls on sandstone reservoir quality , 2019, AAPG Bulletin.
[2] J. Griffiths,et al. Estuarine clay mineral distribution: Modern analogue for ancient sandstone reservoir quality prediction , 2019, Sedimentology.
[3] R. H. Worden,et al. How To Quantify Clay-Coat Grain Coverage in Modern and Ancient Sediments , 2019, Journal of Sedimentary Research.
[4] D. Beaufort,et al. Detrital clay grain coats in estuarine clastic deposits: origin and spatial distribution within a modern sedimentary system, the Gironde Estuary (south‐west France) , 2018, Sedimentology.
[5] J. Griffiths,et al. Detrital Clay Coats, Clay Minerals, and Pyrite: A Modern Shallow-Core Analogue For Ancient and Deeply Buried Estuarine Sandstones , 2018, Journal of Sedimentary Research.
[6] A. Thompson,et al. The origin of clay-coated sand grains and sediment heterogeneity in tidal flats , 2018, Sedimentary Geology.
[7] S. Schmidt,et al. To What Extent Multidecadal Changes in Morphology and Fluvial Discharge Impact Tide in a Convergent (Turbid) Tidal River , 2018 .
[8] S. Pemberton,et al. Modern observations of floccule ripples: Petitcodiac River estuary, New Brunswick, Canada , 2018 .
[9] R. Steel,et al. Recognition and significance of bayhead delta deposits in the rock record: A comparison of modern and ancient systems , 2018 .
[10] S. Jones. Goo, glue, and grain binding: Importance of biofilms for diagenesis in sandstones , 2017 .
[11] A. Thompson,et al. Biofilm Origin of Clay-Coated Sand Grains , 2017 .
[12] R. H. Worden,et al. Sedimentary controls on modern sand grain coat formation , 2017 .
[13] J. Griffiths,et al. Clay coated sand grains in petroleum reservoirs: understanding their distribution via a modern analogue , 2017 .
[14] M. Pagel,et al. Sedimentological control on the diagenesis and reservoir quality of tidal sandstones of the Upper Cape Hay Formation (Permian, Bonaparte Basin, Australia) , 2016 .
[15] S. Pemberton,et al. Sedimentology and ichnology of the fluvial reach to inner estuary of the Ogeechee River estuary, Georgia, USA , 2016 .
[16] D. Beaufort,et al. Chlorite and chloritization processes through mixed-layer mineral series in lowtemperature geological systems – a review , 2015, Clay Minerals.
[17] L. T. Bryndzia,et al. Reservoir quality and rock properties modeling – Triassic and Jurassic sandstones, greater Shearwater area, UK Central North Sea , 2015 .
[18] Sabine Schmidt,et al. Turbidity in the fluvial Gironde Estuary (southwest France) based on 10-year continuous monitoring: sensitivity to hydrological conditions , 2015 .
[19] Philippe Bonneton,et al. Tidal bore dynamics in funnel‐shaped estuaries , 2015 .
[20] B. Massart. Improved characterisation and modelling of heterolithic tidal sandstone reservoirs , 2014 .
[21] K. Bjørlykke. Relationships between depositional environments, burial history and rock properties. Some principal aspects of diagenetic process in sedimentary basins , 2014 .
[22] E. Chaumillon,et al. Tidal and fluvial controls on the internal architecture and sedimentary facies of a lobate estuarine tidal bar (The Plassac Tidal Bar in the Gironde Estuary, France) , 2013 .
[23] M. Jackson,et al. Facies model of a fine‐grained, tide‐dominated delta: Lower Dir Abu Lifa Member (Eocene), Western Desert, Egypt , 2013 .
[24] Murray K. Gingras,et al. Subsurface and outcrop characterization of large tidally influenced point bars of the Cretaceous McMurray Formation (Alberta, Canada) , 2012 .
[25] P. Lesueur,et al. Infilling stratigraphy of macrotidal tide-dominated estuaries. Controlling mechanisms: Sea-level fluctuations, bedrock morphology, sediment supply and climate changes (The examples of the Seine estuary and the Mont-Saint-Michel Bay, English Channel, NW France) , 2012 .
[26] N. Guy,et al. Analysis of Heavy Oil Recovery by Thermal EOR in a Meander Belt: From Geological to Reservoir Modeling , 2012 .
[27] C. Poirier,et al. Tidal and fluvial controls on the morphological evolution of a lobate estuarine tidal bar: The Plassac Tidal Bar in the Gironde Estuary (France) , 2012 .
[28] Isabelle Billy,et al. Origin and composition of particulate organic matter in a macrotidal turbid estuary: The Gironde Estuary, France , 2012 .
[29] A. Martinius,et al. Anatomy of a laterally migrating tidal bar in front of a delta system: Esdolomada Member, Roda Formation, Tremp‐Graus Basin, Spain , 2012 .
[30] H. Chanson,et al. High-frequency turbulence and suspended sediment concentration measurements in the Garonne River tidal bore , 2011 .
[31] J. H. Berg,et al. Atlas of sedimentary structures in estuarine and tidally-influenced river deposits of the Rhine-Meuse-Scheldt system : their application to the interpretation of analogus outcrop and subsurface depositional systems , 2011 .
[32] Patrice Woerther,et al. Monitoring water quality in estuarine environments: lessons from the MAGEST monitoring program in the Gironde fluvial-estuarine system , 2010 .
[33] S. Morad,et al. The impact of diagenesis on the heterogeneity of sandstone reservoirs: A review of the role of depositional facies and sequence stratigraphy , 2010 .
[34] H. Posamentier,et al. Comparison of wave-and tide-dominated incised valleys: specific processes controlling systems tract architecture and reservoir geometry , 2010 .
[35] G. Pe‐Piper,et al. Relationship of diagenetic chlorite rims to depositional facies in Lower Cretaceous reservoir sandstones of the Scotian Basin , 2010 .
[36] R. Dalrymple,et al. Tide- and wave-generated fluid mud deposits in the Tilje Formation (Jurassic), offshore Norway , 2009 .
[37] S. Morad,et al. Clay minerals in sandstones; controls on formation, distribution and evolution , 2009 .
[38] David Doxaran,et al. Dynamics of the turbidity maximum zone in a macrotidal estuary (the Gironde, France): Observations from field and MODIS satellite data , 2009 .
[39] G. Pe‐Piper,et al. Early diagenesis of inner-shelf phosphorite and iron-silicate minerals, Lower Cretaceous of the Orpheus graben, southeastern Canada: Implications for the origin of chlorite rims , 2008 .
[40] Philip Ringrose,et al. Identifying the Representative Elementary Volume for Permeability in Heterolithic Deposits Using Numerical Rock Models , 2008 .
[41] S. Audry,et al. Effect of estuarine sediment resuspension on early diagenesis, sulfide oxidation and dissolved molybdenum and uranium distribution in the Gironde estuary, France , 2007 .
[42] A. Martinius,et al. Time-series analysis of a heterolithic, ripple-laminated deposit (Early Jurassic, Tilje Formation) and implications for reservoir modelling , 2006 .
[43] G. Hampson,et al. A sequence stratigraphic model for an intensely bioturbated shallow‐marine sandstone: the Bridport Sand Formation, Wessex Basin, UK , 2006 .
[44] Matthew D. Jackson,et al. Three-dimensional reservoir characterization and flow simulation of heterolithic tidal sandstones , 2005 .
[45] R. Wen,et al. Petrophysical characterization of a heterolithic tidal reservoir interval using a process-based modelling tool , 2005, Petroleum Geoscience.
[46] R. Wen,et al. Vertical permeability estimation in heterolithic tidal deltaic sandstones , 2005, Petroleum Geoscience.
[47] A. Martinius,et al. Reservoir challenges of heterolithic tidal sandstone reservoirs in the Halten Terrace, mid-Norway , 2005, Petroleum Geoscience.
[48] T. Goslar,et al. Low-energy 14C AMS in Poznań Radiocarbon Laboratory, Poland , 2004 .
[49] G. Abril,et al. Metal mobilization in the Gironde Estuary (France): the role of the soft mud layer in the maximum turbidity zone , 2004 .
[50] L. Wood. Predicting Tidal Sand Reservoir Architecture Using Data from Modern and Ancient Depositional Systems , 2004 .
[51] Matthew D. Jackson,et al. Upscaling Permeability Measurements Within Complex Heterolithic Tidal Sandstones , 2003 .
[52] L. Bergonzini,et al. AMS-14C chronology of 40.0 cal ka BP continuous deposits from a crater lake (Lake Massoko, Tanzania) , 2002 .
[53] K. Bjørlykke,et al. Porosity preservation in reservoir sandstones due to grain-coating illite: a study of the Jurassic Garn Formation from the Kristin and Lavrans fields, offshore Mid-Norway , 2002 .
[54] R. H. Lander,et al. Anomalously high porosity and permeability in deeply buried sandstone reservoirs: Origin and predictability , 2001 .
[55] W. McAnally,et al. Aggregation rate of fine sediment , 2000 .
[56] T. Garlan,et al. Residual Transport Model in Correlation with Sedimentary Dynamics over an Elongate Tidal Sandbar in the Gironde Estuary (Southwestern France) , 2000 .
[57] R. Whitehouse,et al. Dynamics of estuarine muds : a manual for practical applications , 2000 .
[58] Patrice Castaing,et al. A synthesis on seasonal dynamics of highly-concentrated structures in the Gironde estuary , 1999 .
[59] J. Tastet,et al. Intertidal clay‐drape couplets (Gironde estuary, France) , 1999 .
[60] T. Hentz. Advanced Reservoir Characterization for the 21st Century: 19th Annual , 1999 .
[61] J. Tastet,et al. Facies and architecture of an estuarine tidal bar (the Trompeloup bar, Gironde Estuary, SW France) , 1998 .
[62] Gilles Lericolais,et al. Reconnaissance par stratigraphie sismique haute résolution de la paléovallée de la Gironde sur le plateau continental , 1998 .
[63] P. Nadeau,et al. The Effect of Grain-Coating Microquartz on Preservation of Reservoir Porosity , 1996 .
[64] H. Posamentier,et al. Transgressive Facies and Sequence Architecture in Mixed Tide- and Wave-Dominated Incised Valleys: Example From the Gironde Estuary, France , 1994 .
[65] K. Bjørlykke,et al. Quartz Cementation in Sedimentary Basins , 1993 .
[66] R. Dalrymple,et al. Estuarine Facies Models: Conceptual Basis and Stratigraphic Implications: PERSPECTIVE , 1992 .
[67] S. Ehrenberg,et al. Preservation of Anomalously High Porosity in Deeply Buried Sandstones by Grain-Coating Chlorite: Examples from the Norwegian Continental Shelf , 1992 .
[68] O. Weber,et al. Repartition des mineraux argileux sur le plateau continental Sud-Gascogne , 1991 .
[69] G. P. Allen. Sedimentary Processes and Facies in the Gironde Estuary: A Recent Model for Macrotidal Estuarine Systems , 1991 .
[70] R. Gibbs,et al. Coagulation and transport of sediments in the Gironde Estuary , 1989 .
[71] Colin R. Pate. Assessing the Relative Importance of Compaction Processes and Cementation to Reduction of Porosity in Sandstones: DISCUSSION , 1989 .
[72] S. Ehrenberg. Assessing the Relative Importance of Compaction Processes and Cementation to Reduction of Porosity in Sandstones: Discussion; Compaction and Porosity Evolution of Pliocene Sandstones, Ventura Basin, California: DISCUSSION , 1989 .
[73] B. Velde,et al. Solid solutions in I/S mixed-layer minerals and illite , 1989 .
[74] K. Weber,et al. HOW HETEROGENEITY AFFECTS OIL RECOVERY , 1986 .
[75] R. Gibbs. Coagulation rates of clay minerals and natural sediments , 1983 .
[76] A. D. Resseguier. A portable coring device for use in the intertidal environment , 1983 .
[77] M. Visser. Neap-spring cycles reflected in Holocene subtidal large-scale bedform deposits: A preliminary note , 1980 .
[78] J. Salomon,et al. Effects of tides on mixing and suspended sediment transport in macrotidal estuaries , 1980 .
[79] C. Latouche,et al. L'expérience double marquage de vase en Gironde . Contribution à la connaissance du devenir d'une pollution métallique en estuaire , 1980 .
[80] G. Sauzay,et al. TRANSPORT AND DEPOSITION OF SUSPENDED SEDIMENT IN THE GIRONDE ESTUARY, FRANCE , 1977 .
[81] R. Bonnefille,et al. Processus de sédimentation des vases dans l'estuaire de la Gironde Contribution d'un traceur radioactif pour l'étude du déplacement des vases , 1974 .
[82] R. Berner. Sedimentary pyrite formation , 1970 .
[83] H. Reineck,et al. Classification and Origin of Flaser and Lenticular Bedding , 1968 .
[84] R. Berner. thermodynamic stability of sedimentary iron sulfides , 1967 .
[85] R. Grim. Modern Concepts of Clay Materials , 1942, The Journal of Geology.