Academic literature on the topic 'Plis (Géologie)'
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Journal articles on the topic "Plis (Géologie)"
Boudoukha, Abderrahmane, and Malika Athamena. "Caractérisation des eaux thermales de l'ensemble Sud sétifien. Est algérien." Revue des sciences de l’eau 25, no. 2 (August 7, 2012): 103–18. http://dx.doi.org/10.7202/1011602ar.
Full textWebster, Tim, Kevin McGuigan, Nathan Crowell, Kate Collins, and Candace MacDonald. "Remote Predictive Mapping 7. The Use of Topographic–Bathymetric Lidar to Enhance Geological Structural Mapping in Maritime Canada." Geoscience Canada 43, no. 3 (September 30, 2016): 199. http://dx.doi.org/10.12789/geocanj.2016.43.099.
Full textDupont, Nicolas, Yves Quinif, Caroline Dubois, Hai Cheng, and Olivier Kaufmann. "Le système karstique de Sprimont (Belgique). Holotype d’une spéléogenèse par fantômisation." BSGF - Earth Sciences Bulletin 189, no. 1 (2018): 1. http://dx.doi.org/10.1051/bsgf/2017205.
Full textDissertations / Theses on the topic "Plis (Géologie)"
Amrouch, Khalid. "Apport de l’analyse microstructurale à la compréhension des mécanismes de plissement : Exemples de structures plissées aux USA (Wyoming) et en Iran (Zagros)." Paris 6, 2010. http://www.theses.fr/2010PA066107.
Full textGrelaud, Sylvain. "Couplage socle-couverture et style de la déformationau front des orogènes : Comparaison entre le Minervois (front des Pyrénées, France) et le Potwar (front de l'Hymalaya, Pakistan)." Cergy-Pontoise, 2001. http://www.theses.fr/2001CERG0130.
Full textComparison of two orogen fronts: (1) the north pyrenean front in the Bas-Languedoc (South of France), (2) the himalayan front in northern Pakistan, is a key to understand the role of the coupling between basement and sedimentary cover in the deformation within the cover at different scales. The Oupia anticline is a fault propagation fold whose geometric evolution during its growth is well represented by the "trishear" model. In this region, the cover is locked to the basement and analysis of anisotropy of magnetic susceptibility (AMS) performed on 66 sites reveals some tectonic fabrics indicative of strong internal strain. On the other hand, seismic sections and maturity of organic compound within the Salt Range and the Potwar basin in northern Pakistan show that the Salt Range is a complex fault bend fold initiated 11 Myr ago. At -5 Myr, activity decreased on the Salt range thrust and decollement folding developped in the piggy-back basin of south Potwar. Magnetic fabrics are poorly evolved indicating that the whole sedimentary cover has been translated with a weak internal deformation. We related this result to the existence of a thick salt layer acting as the major decollement level beneath the south Potwar basin and the Salt range. In the case of a strong coupling we observe the formation of a fault propagation fold with an important internal strain. On the contrary, where the coupling is weak, fault bend and decollement folds are formed. We show an anticorrelation beetwen the magnitude of the displacement of the cover and its degree of internal strain
Al, Saffar Mohammad. "Géométrie et modélisation numérique des structures anticlinales : exemples, Atlas saharien (Algérie), Rides sud Rifaines (Maroc) et Pyrénées (France et Espagne)." Pau, 1993. http://www.theses.fr/1993PAUU3034.
Full textSaint-Bezar, Bertrand. "Apport de la modélisation cinématique et du magnétisme structural à la compréhension d'un front chevauchant aveugle : la région de Goulmima (Maroc), élément du Front Sud Atlasique." Cergy-Pontoise, 1999. http://biblioweb.u-cergy.fr/theses/99CERG0114.pdf.
Full textOuttani, Fatima. "Cinématique, modélisation et bilan énergétique des plis de rampe : approche théorique et application à deux régions du Front Sud Atlasique." Cergy-Pontoise, 1996. http://www.theses.fr/1996CERG0011.
Full textBuil, Diego. "L'approche cinématique du plissement naturel : intérêts et limites : Développements autour de la notion de "Trishear"." Cergy-Pontoise, 2002. http://www.theses.fr/2002CERG0181.
Full textFault-propagation fold, characterised by simultaneous development of folding and faulting, has been identified by Dahlstrom in the late sixties and popularised by the rise of "kinematic modelling". This thesis aims to investigate the relationship between the fault propagation rate versus slip ratio rate ("p/s ratio") and its application to the Trishear kinematic model. This model has been developed a decade ago by Erslev, and can be used to simulate geometrical deformation at the tip of a propagating fault. After a brief description of the geometric construction of the kinematic model, we compare the shapes of some Trishear folds with natural examples and to the results of a variety of numerical and analog experiments in order to test its accuracy. More precisely, the applicability of the Trishear model to the flat-ramp transition is shown, highlighting its mechanical consistency. In particular, the process by which the fold backlimb acquires its dip and thickness is more realistic than in previous kinematic models. We conclude that the Trishear kinematic model is able to reproduce actual structures observed in the field. However a more complete mechanical study of the model is clearly required to allow a better understanding of the relationships between folds and thrusts
Sherkati, Shahram. "Style tectonique et cinématique du plissement dans le Zagros iranien (zone d'Iseh) : conséquences pétrolières." Cergy-Pontoise, 2004. http://www.theses.fr/2004CERG0203.
Full textLabrousse, Mourad. "Modélisation numérique des plis de rupture, applications à des exemples naturels (rides sud-rifaines, Maroc et cordillères ibériques, Espagne)." Pau, 1998. http://www.theses.fr/1998PAUU3012.
Full textAubiès-Trouilh, Alexandre. "Exploitation et mise à disposition de nouvelles techniques de modélisation géologique 3D afin d'apprécier la géométrie des plis-failles." Thesis, Université Laval, 2009. http://www.theses.ulaval.ca/2009/26660/26660.pdf.
Full textThe San Corneli anticline located within the Spanish central Pyrenees, is a foreland fault-related fold. This compressive structure developed within the Boixòls thrust sheet during the emplacement of the fold and thrust belt above the Iberian plate during the Meso-Cenozoic. Geometrically, the San Corneli anticline corresponds to a fault propagation fold (8 km by 10 km). Pre-compression extensive structures have been recognized within the anticline. These syntectonic normal faults and fractures were formed during deposition of sediments in the mesozoic rifted basin. The aim of our research is to determine the influence of these normal faults on the development of the San Corneli anticline and their effect on the particular geometry of this fault propagation fold. We used 3D geometrical modeling to gain a better understanding of the relationship between the pre-existing structures and the geometry and kinematics of the fault propagation fold. Furthermore, in this area the vegetative cover is minimal and the San Corneli anticline is very well exposed giving access to numerous field data and facilitating surface modeling of the present geometry of the fold. Our methodology consists, as a first step, in reverse 3D modeling. The geological model volume is restored using the 3D Restoration plugin proposed by gOcad based on cross section balancing. This technique allows to obtain a 3D paleogeographic model, and thus to deduce the location and geometry of preexisting normal faults with depositing sediments in the basin. In order to test different assumptions about the mode of development of this fault propagation fold, we have conducted a series of 3D geometrical models directly from the paleogeographic model. The aim of 3D forward modeling is to revert to the current state of deformation of the model. We were able to better appreciate the chronology of events that have affected the fold and evaluate to what extent the early faults have influenced the kinematics of the San Corneli fold. In this sense, we were able to show that the orientation of pre-existing faults with respect to the regional compressive stress influences the way in which these faults will be reactivated, either in a vertical (reverse) or horizontal sense (strike-slip).
Kampfer, Günther. "PLIS ET FRACTURES D'EXTENSION DANS LES ROCHES STRATIFIÉES." Phd thesis, Ecole Normale Supérieure de Paris - ENS Paris, 2010. http://tel.archives-ouvertes.fr/tel-00564546.
Full textBooks on the topic "Plis (Géologie)"
Dejonghe, L. Les plus beaux rochers de Wallonie: Géologie et petite histoire. Bruxelles: Service géologique de Belgique, 2007.
Find full textLiede-Schumann, Sigrid, Ulrich Meve, Gildas Gâteblé, Gabrielle Barriera, and Silvio Fici. Apocynaceae pro parte, Phellinaceae, Capparaceae : Flore de la Nouvelle Calédonie, volume 27. Publications scientifiques du Muséum, Paris ; IRD, Marseille, 2020. http://dx.doi.org/10.5852/fft49.
Full textBook chapters on the topic "Plis (Géologie)"
VAN VLIET-LANOË, Brigitte, Françoise BERGERAT, René MAURY, and Laurent GEOFFROY. "L’Islande, dans la lignée de deux océans." In L’Islande au cœur de l’Atlantique Nord 1, 23–43. ISTE Group, 2021. http://dx.doi.org/10.51926/iste.9014.ch1.
Full textConference papers on the topic "Plis (Géologie)"
Bonnet, Dominique. "Maylis de Kerangal: une écriture au cœur de la mer." In XXV Coloquio AFUE. Palabras e imaginarios del agua. Valencia: Universitat Politècnica València, 2016. http://dx.doi.org/10.4995/xxvcoloquioafue.2016.3185.
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