Academic literature on the topic 'Bassin de sédimentation'
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Journal articles on the topic "Bassin de sédimentation"
Pastre, Jean-François, Emmanuelle Defive, Frédérique Gablier, and Yannick Lageat. "Changements hydrographiques et volcanisme plio-quaternaire dans les bassins de la Loire et de l’Allier (Massif central, France)." Paléoréseaux hydrographiques quaternaires : centenaire W.M. Davis 51, no. 3 (November 30, 2007): 295–314. http://dx.doi.org/10.7202/033129ar.
Full textHétu, Bernard, and Pierre Bail. "Évolution postglaciaire du régime hydrosédimentaire et vitesse de l’ablation dans un petit bassin-versant des Appalaches près de Rimouski (Bas-Saint-Laurent, Québec)." Géographie physique et Quaternaire 50, no. 3 (November 30, 2007): 351–63. http://dx.doi.org/10.7202/033105ar.
Full textAbdellaoui, B., A. Merzouk, M. Aberkan, and J. Albergel. "Bilan hydrologique et envasement du barrage Saboun (Maroc)." Revue des sciences de l'eau 15, no. 4 (April 12, 2005): 737–48. http://dx.doi.org/10.7202/705478ar.
Full textDuarte, Luis V. "La sédimentation cycliquemarne-calcaire dans le Toarcien du Bassin Lusitanien (Portugal central)." Geobios 27 (December 1994): 663–69. http://dx.doi.org/10.1016/s0016-6995(94)80229-7.
Full textImbert, Guy, Pierre Kerambrun, and Claude Degiovanni. "Hydrodynamisme et sédimentation liés à des rejets anthropiques dans un bassin littoral méditerranéen." Comptes Rendus de l'Académie des Sciences - Series IIA - Earth and Planetary Science 329, no. 3 (August 1999): 205–9. http://dx.doi.org/10.1016/s1251-8050(99)80236-5.
Full textAchite, M., and M. Meddi. "Variabilité spatio-temporelle des apports liquide et solide en zone semi-aride. Cas du bassin versant de l'oued Mina (nord-ouest algérien)." Revue des sciences de l'eau 18 (April 12, 2005): 37–56. http://dx.doi.org/10.7202/705575ar.
Full textRavenne, C., P. Riche, P. Tremolieres, and R. Vially. "Sédimentation et tectonique dans le bassin marin Eocène supérieur-Oligocène des Alpes du Sud." Revue de l'Institut Français du Pétrole 42, no. 5 (September 1987): 529–53. http://dx.doi.org/10.2516/ogst:1987031.
Full textBondue, Vitalie, Claudine Boyer, Michel Lamothe, André G. Roy, and Bassam Ghaleb. "Évolution récente du delta de la Yamachiche (Québec) : processus naturels et impacts anthropiques." Géographie physique et Quaternaire 60, no. 3 (May 13, 2008): 289–306. http://dx.doi.org/10.7202/018001ar.
Full textCarpentier, B., J. P. Gely, A. Y. Huc, and M. M. Blanc-Valleron. "Simulation de la sédimentation dans un bassin évaporitique à niveau d'eau sous influence eustatique. Application au bassin paléogène de Mulhouse (Alsace, France)." Revue de l'Institut Français du Pétrole 47, no. 5 (September 1992): 559–85. http://dx.doi.org/10.2516/ogst:1992040.
Full textAbbes, Ali, and Saïd Tlig. "Tectonique précoce et sédimentation de la série crétacée dans le Bassin des Chotts (Tunisie du Sud)." Géologie Méditerranéenne 18, no. 3 (1991): 149–61. http://dx.doi.org/10.3406/geolm.1991.1459.
Full textDissertations / Theses on the topic "Bassin de sédimentation"
Le, Gouche Chloé. "Sédimentation de la matière organique dans les bassins profonds : cas du Bassin Arctique à l'Eocène." Thesis, Rennes 1, 2017. http://www.theses.fr/2017REN1S025/document.
Full textThe continental organic matter deposited in the deep basins is little described and represents a definite interest for the petroleum industry. Understanding the sedimentary processes that allow the deposit and preservation of this organic material of terrestrial origin in the deep basins is fundamental. During the Palaeogene, a period of glacial transition to icehouse, the Mackenzie Delta, located in the Arctic Basin, receives and maintains continental organic matter from the continent. What is the stratigraphic and climatic context that made possible the export of continental organic matter? Initially, the sedimentary study of the basin showed a mixed mixture dominated by the fluviatile process, with less influence of the process of storms and tides. This model of facies associated with the study of the logs of wells available in the zone made it possible to propose a model of electrical appliances of the wells of the basin and to characterize the sedimentary sequences of the delta to evolve over time and to demonstrate its migration to Beginning of the Paleogene in response to the establishment of the Brooks and Rocky Ranges. Despite the contradictory biostratigraphic constraints that had to be re-evaluated and poor quality seismic data and strongly impacted by the contemporary deformation of the Brooks chain, it is possible to propose a stratigraphic and sedimentological division along two land-sea transects. Paleogeographic series of the Mackenzie Delta. The sedimentary study of the basin showed the presence of influence of the tidal process in the internal zone of the Arctic Basin. The common presence of pollen from Avicenna and Nypa showed the existence of a mangrove well established in the Arctic domain during the Palaeogene with associated temperatures of at least 18-20 ° C. The deposits of organic matter are in the Almost all of continental origin of the Mackenzie Delta. This organic matter is of two types: (1) deposits of coal deposited during the period when the mangrove develops and (2) deposits formed by association of plant debris and amorphous organic matter and deposited under reducing conditions under the water interface -sediment. These deposits of organic matter are the most important at the end of the prograding sequences in the facies of the deltaic plain. A positive correlation was found between the increase in OCD and the increase in detrital inputs in the delta, as well as between deposits of coal and illite. On the other hand, no correlation between the second type (organic debris + MO amoprhe) of organic matter and the clayey cortege could not be demonstrated. From the comparison of organic matter deposits in the Mackenzie Delta and Lomonosov Ridge, the sedimentation rate and anteriority appear to be key parameters in sedimentation conditions and especially in the preservation of organic matter according to l Oxygenation of the medium. Moreover, Lomonosov's Ride presents itself as a guest in a home where it is permitted to remain in semi-emerged position during the Paleogene
Besson, David. "Architecture du bassin rhodano-provençal miocène (Alpes, SE France). Relations entre déformation, physiographie et sédimentation dans un bassin molassique d’avant-pays." Paris, ENMP, 2005. https://pastel.archives-ouvertes.fr/pastel-00003284.
Full textInventory and analysis of incised valleys through the “rhodano-provencal” molassic basin (BMRP) results in re-examining the miocene sea submergence and the tectonic deformations of the alpine chain foreland basin. Three great fluviatile erosion stages have been characterized : between late Aquitanian and early Burdigalian, between late Burdigalian and early Langhian and early Tortonian. These Miocene networks who supply the platform and the slope of Lions Gulf provide some elements for a better geodynamic understanding of this area: in particular how the deceleration and the stop of the opening of the Lion Gulf interact with the alpine shortening. The marine Miocene invasions of the peri-alpine furrow are controlled by these successive fluviatile networks existence. The first fluviatile network filling is composed of bioclastic carbonates of “foramol” facies. A high frequency sequential model of an incised valleys complex is proposed. The identification of the three Miocene incised valleys networks allow a completely new BMRP geomorphological evolution analysis. The Aquitano-Burdigalian valleys are generally superimposed and encased in the Oligo-Aquitanian deposits in direct relation with the tectonic foreland basin morphostructural heritage and sign a regional large wavelength deformation reported to a compression stage of this field at the lower Miocene. The next networks are in quasi-conformity with the septentrional pyreneo-provencal structures. They are in relation with the activation of the folds and thrust. They sign a shorter wavelength folded deformation associated, for the late Burdigalian network, to a regional rising. Their superposition underlines the tectonic control perenniality. Their dismantling is the consequence of the folds and thrust activation causing not only depotcenters migration but also of the successive valleys networks whose deformation amplifies the digging
Toulemont, Marcel. "Les gypses lutétiens du bassin de Paris : sédimentation, karstification et conséquences géotechniques." Paris 11, 1986. http://www.theses.fr/1986PA112150.
Full textFredet, Jean-Marc. "Tectonique et sédimentation en domaine continental : évolution du bassin paléogène d'Alès (Gard)." Lyon 1, 1987. http://www.theses.fr/1987LYO19027.
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 textLiu, Jia Duo. "Sédimentation actuelle et récente dans le bassin des Loyauté entre Thio et Lifou (Nouvelle-Calédonie, Pacifique sud-ouest)." Lyon 1, 1988. http://www.theses.fr/1988LYO10034.
Full textPierson, d'Autrey Laurent. "Sédimentation et structuration synsédimentaire dans le bassin néogène d'Alcoy (Cordillères bétiques externes orientales, Espagne)." Paris 11, 1987. http://www.theses.fr/1987PA112061.
Full textThis thesis offers an analysis of sedimentary neogene and quaternary sequences and tectonic and tectono-sedimentary process, which allow to outline the dynamic evolution of the alcoy basin. The area, which has been studied, belongs to the internal Prebetic part of the external betic Cordillera. Since the Aquitanian, the area has been submited to a marine sedimentary regime. But, it is from the lower Burdigalien that a period of a N 130-N 140 shortening is the reason of the individualism of the basin. Bigs cavings, checked by NW-SE faults, slice old folds betic direction of which is WSWENE. At the end of the transgressive upper Burdigalian sedimentation, the basin is subjected again to a shortening, direction of which is sub-meridian, which brings up a re-mobilization of the old folds, with a deepening of sedimentary environment. After, during the Langhian, a N 130-N 140 shortening is the cause of a tectonic instability, which appears by many gravitary phenomena and a synclinal strain of the Baradello trench, checked up by a reverse move with a small left strikeslip of the N 50 Alcoy fault. The stop of stains, which is shown by a discordance of the Serravallian deposits over the Langhian deposits, is the reason, during this period, of a transgression over all the emergent areas during the Langhian. The presence of a new discordance between the Serravallian and the lower Tortonian is the proof of a revival of the tectonic activity (shortening) and consequently of a warping margin, and of a decrease of the depht of the sedimentary environment. The final emersion of the marine basin takes place during the Tortonian with the erection of overthrusting and important structures and the resetting of old ground features, which give an indication of a sub-meridian shortening. After these tectonic events, a lake is appearing, gradualy filled up during the Messinian, because the subsidence is slowing down and because the flood plains progressing since the border rims are spreading out. The filling of the exundated basin does end during the Plio-Quaternary and the present digging by the drainage pattern makes clear a regional lift up
Lymer, Gaël. "Interactions entre tectonique crustale, tectonique salifère et sédimentation : la marge occidentale du bassin tyrrhénien." Thesis, Lille 1, 2014. http://www.theses.fr/2014LIL10176/document.
Full textIn the Western Tyrrhenian Basin, rifting of the Eastern-Sardinian margin started during the middle to late In the Western Tyrrhenian Basin, rifting of the Eastern-Sardinian margin started during the middle to late Miocene times, due to back-arc extension following the eastward migration of the Apennine subduction system. The Western Tyrrhenian Basin has also been affected by the Messinian Salinity Crisis (MSC), which generated evaporitic deposits, particularly a thick mobile salt layer. Based on the interpretation of the new METYSS seismic data (Messinian Event in the TYrrhenian from Seismic Study), this work aims at a better understanding the modalities of the MSC, the relationships between crustal tectonics and salt tectonics, and the geodynamic evolution of the Eastern-Sardinian margin.The results lead to a detailed map of the MSC seismic markers (depositional units and remarkable surfaces). These markers provide spatiotemporal indicators and allow to constrain the structural analysis. Along the margin the major crustal stage is pre-MSC. Thus rifting of the margin occurred before the MSC and did not continue until Pliocene times, as previously considered. Moreover, this study evidences post-MSC crustal motions, well distinct from the rifting stage and linked to post-rift reactivation of the margin. This second crustal stage is various and complex; it reactivated crustal normal fault that had formed during rifting, but also generated crustal compressional structures. In some places, tilting of the pre-MSC basement triggered some salt tectonics
Delenin, Pascal. "Dynamique du remplissage du bassin Stéphanien des Cévennes : structuration et mise en cause des charriages." Dijon, 1990. http://www.theses.fr/1990DIJOS037.
Full textBesson, David. "Architecture du bassin rhodano-provençal miocène (Alpes, SE France) : relations entre déformation, physiographie et sédimentation dans un bassin molassique d'avant-pays." Phd thesis, École Nationale Supérieure des Mines de Paris, 2005. http://pastel.archives-ouvertes.fr/pastel-00003284.
Full textBooks on the topic "Bassin de sédimentation"
français, Association des sédimentologistes. Dynamique et méthodes d'étude des bassins sédimentaires. Paris: Editions Technip, 1989.
Find full textPashin, Jack C. Reevaluation of the Bedford-Berea sequence in Ohio and adjacent states: Forced regression in a foreland basin. Boulder, Colo: Geological Society of America, 1995.
Find full textD, Naeser Nancy, McCulloh Thane Hubert 1926-, Society of Economic Paleontologists and Mineralogists., American Association of Petroleum Geologists., and Society of Economic Paleontologists and Mineralogists Research Symposium on "Thermal History of Sedimentary Basins--Methods and Case Histories" (1985 : New Orleans, La.), eds. Thermal history of sedimentary basins: Methods and case histories. New York: Springer-Verlag, 1989.
Find full textCaldwell, W. G. E. 1932-, Kauffman Erle G. 1933-, and Geological Association of Canada, eds. Evolution of the Western Interior Basin. St. John's, Nfld., Canada: Geological Association of Canada, 1993.
Find full textW. G. E. Caldwell (Editor) and Erle G. Kauffman (Editor), eds. Evolution of the Western Interior Basin (Gac Special Paper, No. 39). Geological Assn of Canada, 1994.
Find full textBeratan, Kathi K. Reconstructing the History of Basin and Range Extension Using Sedimentology and Stratigraphy. Geological Society of America, 1996.
Find full text1957-, Beratan Kathi K., ed. Reconstructing the history of basin and range extension using sedimentology and stratigraphy. Boulder, Colo: Geological Society of America, 1996.
Find full textLes Bassins Néogènes du domaine bétique oriental, Espagne: Tectonique et sédimentation dans un couloir de décrochement = Eastern Betic Neogene basins, Spain : tectonics and sedimentation within a transcurrent shear zone. Paris: Institut géologique Albert-de-Lapparent, 1990.
Find full textCogato Lanza, Elena, Farzaneh Bahrami, Simon Berger, and Luca Pattaroni, eds. Post-Car World. MetisPresses, 2021. http://dx.doi.org/10.37866/0563-73-9.
Full textConference papers on the topic "Bassin de sédimentation"
KOFFI, Bérenger, Kouakou Lazare KOUASSI, Martin SANCHEZ, Zilé Alex KOUADIO, Kouakou Hervé KOUASSI, and Affoué Berthe YAO. "Estimation de la sédimentation dans la retenue d'eau de la rivière Lobo à l'aide de la théorie des bassins de décantation." In Journées Nationales Génie Côtier - Génie Civil. Editions Paralia, 2020. http://dx.doi.org/10.5150/jngcgc.2020.028.
Full textReports on the topic "Bassin de sédimentation"
Higgins, A. K., J. R. Ineson, J. S. Peel, F. Surlyk, and M. Sonderholm. Chapitre 7: Formation et Sédimentation du Bassin Franklinien du Cambrien au Silurien, au Groenland Septentrional. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/134019.
Full textTrettin, H. P., U. Mayr, G. D. F. Long, and J. J. Packard. Chapitre 8: Formation du Bassin, Sédimentation et Volcanisme dans l'Archipel Arctique, du Cambrien au Dévonien Inférieur. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/134020.
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