INFLUENCE OF VISCOUS LAYERS ON THE GROWTH OF NORMAL FAULTS: INSIGHTS FROM EXPERIMENTAL AND NUMERICAL MODELS

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dc.contributor.author Bellahsen N.
dc.contributor.author Daniel J.M.
dc.contributor.author Bollinger L.
dc.contributor.author Burov E.
dc.date.accessioned 2022-01-24T03:31:19Z
dc.date.available 2022-01-24T03:31:19Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=1608231
dc.identifier.citation Journal of Structural Geology, 2003, 25, 9, 1471-1485
dc.identifier.issn 0191-8141
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/34559
dc.description.abstract The influence in space and time of viscous layers on the deformation pattern of brittle layers is investigated using wet clay/silicone putty analogue models in extension. Brittle and brittle-viscous experiments at various extension velocities are compared. Numerical models are also performed to confirm the results and to control the boundary conditions. Our results show that: (i) the presence of a basal viscous layer localizes the deformation by creating faults with very large throw. This kind of deformation distribution constrains the location of small faults, with scattered orientations, in the vicinity of the larger, in particular in relay zones. (ii) A lower strength of the viscous layer (i.e. a low extension velocity) enhances this localization of the deformation. (iii) The displacement-length relationship and the spatial distribution of small-scale faults are strongly influenced by both the rheology of the model and the amount of extension. This study shows that they are important parameters, especially when characterizing the whole fault network evolution and the relationship between large and small faults.
dc.subject NORMAL FAULTS
dc.subject ANALOGUE MODELS
dc.subject NUMERICAL MODELS
dc.subject VISCOUS LAYERS
dc.subject RHEOLOGY
dc.subject DISPLACEMENT-LENGTH RELATIONSHIP
dc.title INFLUENCE OF VISCOUS LAYERS ON THE GROWTH OF NORMAL FAULTS: INSIGHTS FROM EXPERIMENTAL AND NUMERICAL MODELS
dc.type Статья


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