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Deformation pattern during normal faulting: A sequential limit analysis

delete2017-02-25
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OA
AI
X
Xiaoping Yuan *
B
Bertrand Maillot
Y
Yves M. Leroy
DOI:10.1002/2016JB013430delete
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Abstract

Abstract

En 中文
We model in 2-D the formation and development of half-graben faults above a low-angle normal detachment fault. The model, based on a sequential limit analysis accounting for mechanical equilibrium and energy dissipation, simulates the incremental deformation of a frictional, cohesive, and fluid-saturated rock wedge above the detachment. Two modes of deformation, gravitational collapse and tectonic collapse, are revealed which compare well with the results of the critical Coulomb wedge theory. We additionally show that the fault and the axial surface of the half-graben rotate as topographic subsidence increases. This progressive rotation makes some of the footwall material being sheared and entering into the hanging wall, creating a specific region called foot-to-hanging wall (FHW). The model allows introducing additional effects, such as weakening of the faults once they have slipped and sedimentation in their hanging wall. These processes are shown to control the size of the FHW region and the number of fault-bounded blocks it eventually contains. Fault weakening tends to make fault rotation more discontinuous and this results in the FHW zone containing multiple blocks of intact material separated by faults. By compensating the topographic subsidence of the half-graben, sedimentation tends to slow the fault rotation and this results in the reduction of the size of the FHW zone and of its number of fault-bounded blocks. We apply the new approach to reproduce the faults observed along a seismic line in the Southern Jeanne d'Arc Basin, Grand Banks, offshore Newfoundland. There, a single block exists in the hanging wall of the principal fault. The model explains well this situation provided that a slow sedimentation rate in the Lower Jurassic is proposed followed by an increasing rate over time as the main detachment fault was growing.
Keywords:
ANALOG
STRENGTH
KINEMATICS
MECHANICS
GEOMETRY
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Journal

J
Journal of Geophysical Research and Solid Earth
IF:
4.1
Papers:
1.4W
Citations:
6.4W

Organization

C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
E
ecole normale superieure (ens)
Scholars:
3.0K
Papers: 2.1K
Citations: 4