Academic literature on the topic 'Géologie sédimentaire'
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Journal articles on the topic "Géologie sédimentaire"
Gygi, Monsieur R. "Fondation pour la recherche sur la géologie sédimentaire et structurale aux Monts Jura; Jura-Stiftung für Sediment- und Strukturgeologie." Swiss Journal of Geosciences 102, no. 2 (September 2009): 373. http://dx.doi.org/10.1007/s00015-009-1327-z.
Full textMeilliez, Francis, Marc Thonon, and Benoît Poncelet. "Un aménagement hydraulique bicentenaire : la Rigole du Noirieu." Annales de la Société géologique du Nord - (2e Série), Tome 29, no. 29 (December 1, 2022): 133–40. http://dx.doi.org/10.54563/asgn.1941.
Full textVAUCLIN, S., B. MOURIER, and T. WINIARSKI. "De l’intérêt de coupler méthodes géophysiques et carottages sédimentaires pour l’étude des sédiments fluviaux." Techniques Sciences Méthodes 11 (November 20, 2019): 33–49. http://dx.doi.org/10.36904/tsm/201911033.
Full textDionne*, Jean-Claude. "Âge et taux moyen d’accrétion verticale des schorres du Saint-Laurent estuarien, en particulier ceux de Montmagny et de Sainte-Anne-de-Beaupré, Québec." Géographie physique et Quaternaire 58, no. 1 (June 26, 2006): 73–108. http://dx.doi.org/10.7202/013111ar.
Full textKhaffou, Moulouda, Mohamed Raji, and Moha El-Ayachi. "Apport d’analyse des données géophysique et géodésique sur L’évolution dynamique du Système de Rift Est Africain." SHS Web of Conferences 175 (2023): 01021. http://dx.doi.org/10.1051/shsconf/202317501021.
Full textMiall, Andrew D. "Logan Medallist 3. Making Stratigraphy Respectable: From Stamp Collecting to Astronomical Calibration." Geoscience Canada 42, no. 3 (July 29, 2015): 271. http://dx.doi.org/10.12789/geocanj.2015.42.072.
Full textGraveleau, Fabien, Olivier Averbuch, Benoît Crepin, and Thierry Oudoire. "Project of 4-D modelling of the Nord – Pas-de-Calais coal basin: from the glass-tables of the Lille museum to a computer-based geometrical and tectonic modelling." Annales de la Société géologique du Nord - (2e Série), Tome 24, no. 24 (December 1, 2017): 33–41. http://dx.doi.org/10.54563/asgn.857.
Full textAlaoui Mhamdi, M., L. Aleya, S. Rachiq, and J. Devaux. "Étude préliminaire sur les échanges de phosphore à l'interface eau- sédiment au sein de la retenue d'Al Massira (Maroc)." Revue des sciences de l'eau 7, no. 2 (April 12, 2005): 115–30. http://dx.doi.org/10.7202/705192ar.
Full textde Boutray, Bernard, and Claude Hillaire-Marcel. "Aperçu géologique du substratum et des dépôts meubles quaternaires dans la région de Blanc-Sablon, Québec." Dynamique et paléogéographie de l’inlandsis laurentidien 31, no. 3-4 (January 17, 2011): 207–15. http://dx.doi.org/10.7202/1000273ar.
Full textIdder, Tahar, Abdelhak Idder, Abdourahamane Tankari Dan-Badjo, Amina Benzida, Soumia Merabet, Hamza Negais, and Aïcha Serraye. "Les oasis du Sahara algérien, entre excédents hydriques et salinité." Revue des sciences de l’eau 27, no. 2 (June 13, 2014): 155–64. http://dx.doi.org/10.7202/1025565ar.
Full textDissertations / Theses on the topic "Géologie sédimentaire"
Labourdette, Richard. "La modélisation sédimentaire 3D : vers l'intégration des hétérogénéités sédimentaires dans les modèles réservoirs." Montpellier 2, 2007. http://www.theses.fr/2007MON20199.
Full textThis thesis is presented as a compilation of articles focusing on different sedimentological heterogeneity investigation methods and modelling approaches. It highlights the need for a more efficient and effective integration of sedimentology into reservoir models, thereby optimising reservoir characterisation at different heterogeneity scales. Sedimentological knowledge is continually evolving and depends on advances in outcrop investigation and depositional process comprehension. Despite these technological evolutions, sedimentology is still perceived as too complex, with results which are often difficult to image and transfer into the reservoir characterisation workflow. Proportion cubes are presented as a derivative solution for introducing sedimentological concepts and associated uncertainties, thereby allowing their introduction at reservoir model scale. A selection of the many emergent modelling approaches, using geometrical law-based methods and stratigraphic inversion algorithms are explored. Analysis confirms that these approaches can be considered as complementary rather than in competition. It is therefore necessary to integrate the different models directly within the reservoir characterisation workflows. However, this cannot happen without similar evolution in geostatistical tools. Geostatistical and stochastic modelling have already found their way into several recent scientific endeavours. As stated in this research document, geostatistics provide the potential of a spatial integration of sedimentological heterogeneities into reservoir models. They also allow managing the uncertainties derived from sedimentological models
Moyen, Rémi. "Paramétrisation 3D de l'espace en géologie sédimentaire : le modèle GeoChron." Vandoeuvre-les-Nancy, INPL, 2005. http://docnum.univ-lorraine.fr/public/INPL_T_2005_MOYEN_R.pdf.
Full textReservoir modelling requires building a volumic mesh usually adapted to faults and horizons of the domain, on which petrophysical property models are computed. The common practice consists in using stratigraphic curvilinear grids formed of hexahedral cells whose indexes (i, j, k) constitute a sampling of a " 3D parametric function (u, v,t) where (u, v) correspond to the "paleo-geographic" coordinates tangent to the horizons and (t), viewed as an analog to the geological age of the terrains, is approximately orthogonal to the horizons. These grids are suited to the property-modelling geostatistical algorithms but their topological regularity induces errors or approximations in complex fault networks or folded environments. The GeoChron model corrects these drawbacks by clearly segragating the geometry of the domain of study (modelled by an unstructured tetrahedralised mesh), the link between this geometry and the geometry of the layers at the time or deposition (thanks to a 3D parametric function (u,v,t)) and the property model (computed in a regular fine-scaled grid). After exposing the mathematical framework of this model which emphasises the similarity with time stratigraphic (or Wheeler) diagrams used in sedimentology, we show two practical ways of building such a parameterisation and their implementation in the GOCAD geomodelling software. Then we show how the (t) component of the parametric function can be used to automatically compute a geometric estimate of the throw vector in any point of a fault surface. Finally, we present Borne applications concerning petrophysical property modelling, deformation estimation or seismic data integration
Huynh, Cong Hoai. "Modélisation du transport sédimentaire : application au littoral vietnamien." Toulouse, INPT, 2001. http://www.theses.fr/2001INPT014H.
Full textGarrigues, Philippe. "Origine et évolution de séries de composés aromatiques dans l'environnement sédimentaire." Bordeaux 1, 1985. http://www.theses.fr/1985BOR10632.
Full textBorgniet, Laurent. "Modélisation de la dynamique d'un système sédimentaire : le littoral de Huelva (Andalousie)." Université Joseph Fourier (Grenoble), 2000. http://www.theses.fr/2000GRE10132.
Full textFaille, Isabelle. "Modélisation bidimensionnelle de la genèse et de la migration des hydrocarbures dans un bassin sédimentaire." Grenoble 1, 1992. http://www.theses.fr/1992GRE10005.
Full textWang, Hua. "Dynamique sédimentaire, structuration et houillification dans le bassin houiller stéphanien des Cévennes." Dijon, 1991. http://www.theses.fr/1991DIJOS044.
Full textVicaire, Olivier. "Dynamique hydro-sédimentaire en Mer du Nord méridionale : du Cap Blanc-Nez à la frontière belge." Lille 1, 1991. http://www.theses.fr/1991LIL10168.
Full textGourronc, Marine. "Morphologie et remplissage sédimentaire des vallées martiennes : marqueurs des conditions climatiques pré-amazoniennes." Nantes, 2015. http://www.theses.fr/2015NANT2006.
Full textNowadays Mars has a cold and dry climate. At some locations its surface is more than 3. 5 Gy old and exhibits valleys, channels, terraces and deltas attesting the occurrence of liquid water in the past. This fluid is currently unstable on the surface of the planet, suggesting these morphologies would involve different climatic conditions from the current ones. What did early Martian climate look like? lt is one of the main issues regarding this planet. Among the geomorphological evidence classically used to reconstruct past climates, Martian valleys are numerous and heterogeneously distributed thus particularly attractive to study. Their morphologies can inform on the climatic conditions prevailing at the time of their formation and/or later during their evolution. The objective of this thesis is to contribute to solve the enigma concerning Martian pre-Amazonian (> 3. 5 Gy) climatic conditions by focusing on the study of equatorial valleys and the equatorial canyon of Valles Marineris. Our study reveals that the morphometry and spatial organization of some Martian valleys differ significantly from those of common terrestrial fluvial and sapping valleys. By contrast, they share a lot of similarities with terrestrial subglacial tunnel valleys. The subglacial or pro- glacial melting of surface ice deposits is plausible as an origin of some Martian valleys under cold climatic conditions. Moreover, regional geomorphological reconstitutions of Valles Marineris reveal that this valley system had witnessed glacial processes since its formation. Current glacial relicts of this former filling, probably several billion years old, still subsist protected under a debris cover. This study suggests the possibility that pre-Amazonian atmospheric conditions on Mars do not require to be significantly different from the current ones
Lacquement, Frédéric. "Déformation progressive d'un prisme sédimentaire pré-structuré : de l'affleurement au modèle de chaîne l'Ardenne Varisque." Lille 1, 2000. https://pepite-depot.univ-lille.fr/LIBRE/Th_Num/2000/50376-2000-416-417.pdf.
Full textCes failles synsedimentaires controlent la distribution et la nature lithologique des corps sedimentaires du paleozoique superieur. La serie du paleozoique superieur est heterogene et dominee par des lithologies incompetentes ; elle comporte de multiples niveaux de decollements, epais et interstratifies entre les ensembles de nature competente. Un modele geometrique de plissement a pu etre etabli pour ce type de serie ; il correspond a un pli de decollement. Le mecanisme de plissement associe a cette structure est etroitement lie a la geometrie et la nature des corps sedimentaires. Le plissement des ensembles competents s'effectue autour de zones de charnieres fixes par la rotation des flancs, alors que les ensembles incompetents accommodent les variations de geometrie entre deux ensembles competents par fluage et localisent les niveaux de decollements. A l'echelle de la carte geologique, l'etude cinematique des deformations couplee a l'interpretation des profils sismiques et des sondages profonds a demontre l'existence de zones transpressives dextres de direction nw-se. Ces zones sont a l'origine de la forme arquee de la chaine varisque et sont localisees au droit de discontinuites synsedimentaires de direction nw-se, mettant ainsi en evidence l'importance de l'heritage extensif du siluro-devonien lors de la phase compressive varisque
Books on the topic "Géologie sédimentaire"
DiLabio, R. N. W. La prospection glacio-sédimentaire. Ottawa, Ont: Ressources naturelles Canada, 1994.
Find full textCanada, Commission géologique du. Ressources en gaz du groupe de Mannville dans le bassin sédimentaire de l'ouest du Canada. Ottawa, Ont: Commission géologique du Canada, 1997.
Find full textHamblin, Anthony P. Ressources en gaz du groupe de la succession du Crétacé sommital postérieure au groupe de Colorado dans le bassin sédimentaire de l'ouest du Canada (plaines intérieures): Analyse géologique des zones gazéifères et évaluation des ressources. Ottawa, Ont: Commission géologique du Canada, 1997.
Find full textCanada, Commission géologique du. Ressources en gaz du Carbonifère et du Permien dans le bassin sédimentaire de l'ouest du Canada (plaines intérieures). Ottawa, Ont: Commission géologique du Canada, 1997.
Find full textI, Galushkin Yu, ed. Basin analysis and modeling of the burial, thermal and maturation histories in sedimentary basins. Paris, France: Editions Technip, 2005.
Find full textfrançais, Association des sédimentologistes. Dynamique et méthodes d'étude des bassins sédimentaires. Paris: Editions Technip, 1989.
Find full textCanada, Commission géologique du. Ressources potentielles en pétrole dans les bassins sédimentaires de la marge continentale Pacifique du Canada. Ottawa, Ont: Commission géologique du Canada, 2001.
Find full textEinsele, Gerhard. Sedimentary basins: Evolution, facies, and sediment budget. Berlin: Springer-Verlag, 1992.
Find full textJ, Warters W., ed. Mannville gas resources of the Western Canada Sedimentary Basin. Ottawa, Ont: Geological Survey of Canada, 1997.
Find full textJ, Lee P., and Geological Survey of Canada, eds. Uppermost Cretaceous, post-Colorado group gas resources of the Western Canada Sedimentary Basin, interior plains: Geological play analysis and resource assessment. Ottawa, Ont: Geological Survey of Canada, 1997.
Find full textBook chapters on the topic "Géologie sédimentaire"
"Chapitre 5 • Méthodes d’étude de la matière organique sédimentaire." In Géologie de la matière organique, 153–88. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2192-1-008.
Full text"Chapitre 5 • Méthodes d’étude de la matière organique sédimentaire." In Géologie de la matière organique, 153–88. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2192-1.c008.
Full textKERNIF, Tarik, Thierry NALPAS, Romain BOUSQUET, and Roman CHELALOU. "Les brèches sédimentaires synextension dans le nord-est des Pyrénées." In Évolution des Pyrénées au cours du cycle varisque et du cycle alpin 1, 159–73. ISTE Group, 2023. http://dx.doi.org/10.51926/iste.9124.ch4.
Full text"Chapitre 6 • L’évolution thermique des matières organiques sédimentaires : du kérogène aux charbons et aux pétroles." In Géologie de la matière organique, 189–246. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2192-1-009.
Full text"Chapitre 6 • L’évolution thermique des matières organiques sédimentaires : du kérogène aux charbons et aux pétroles." In Géologie de la matière organique, 189–246. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2192-1.c009.
Full textReports on the topic "Géologie sédimentaire"
Logan, C. E., H. A. J. Russell, A. K. Burt, A. Burt, R. P. M. Mulligan, D. R. Sharpe, and A. F. Bajc. A three-dimensional surficial geology model of southern Ontario. Natural Resources Canada/CMSS/Information Management, 2024. http://dx.doi.org/10.4095/pudw24j7tx.
Full textBingham-Koslowski, N., L. T. Dafoe, M R St-Onge, E. C. Turner, J. W. Haggart, U. Gregersen, C. E. Keen, A. L. Bent, and J. C. Harrison. Introduction et sommaire. Natural Resources Canada/CMSS/Information Management, 2022. http://dx.doi.org/10.4095/330002.
Full textDolby, G. Palynological analysis of Carboniferous outcrop and corehole samples from the 1993–1995 Magdalen Basin NATMAP Project, with updated data files, locality data, and lists of taxa identified, Prince Edward Island, Nova Scotia, New Brunswick, and Quebec. Natural Resources Canada/CMSS/Information Management, 2024. http://dx.doi.org/10.4095/pcqvf1214e.
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