Song, Insun et al. (2011): Mechanical characterization of slope sediments; constraints on in situ stress and pore pressure near the tip of the megasplay fault in the Nankai accretionary complex

Leg/Site/Hole:
IODP 314
IODP 314 C0001
IODP 315 C0001
IODP 314 C0003
Identifier:
2013-046515
georefid

10.1029/2011GC003556
doi

Creator:
Song, Insun
Pennsylvania State University, Department of Geosciences, University Park, PA, United States
author

Saffer, Demian M.
Korea Institute of Geoscience and Mineral Resources, South Korea
author

Flemings, Peter B.
University of Texas at Austin, United States
author

Identification:
Mechanical characterization of slope sediments; constraints on in situ stress and pore pressure near the tip of the megasplay fault in the Nankai accretionary complex
2011
Geochemistry, Geophysics, Geosystems - G (super 3)
American Geophysical Union and The Geochemical Society, United States
12
We performed mechanical tests on mudstone samples cored in the hanging wall of a major out of sequence thrust fault in the Nankai accretionary complex prism, SW Japan, (1) to understand the consolidation and shear behaviors of slope sediments that form the fault zone and wall rock of this important structural feature in the upper several kilometers, and (2) to constrain in situ stresses and pore pressure, two fundamental parameters governing deformation processes in subduction zones, which are notoriously difficult to measure. We conducted deformation experiments on a suite of samples taken from depths of 20-150 mbsf, including six uniaxial consolidation tests and one isotropic consolidation test. For three of these tests, we conducted undrained triaxial compression testing following consolidation. Our results suggest that in situ pore pressure is hydrostatic and that during sedimentation and burial, the effective horizontal stress is approximately 41% of the effective vertical stress. In combination with analysis of wellbore failures documented during drilling of the borehole, our experimental data allow us to define the complete stress tensor, including the magnitude of in situ minimum and maximum horizontal stresses, in the hanging wall of this major fault zone. The maximum horizontal stress magnitude is comparable to that expected for sedimentation and uniaxial burial, whereas the minimum horizontal stress lies below this value. This suggests (1) that the shallow sedimentary section was subjected to extension subparallel to the trench during or following burial and (2) that stresses associated with plate convergence are not effectively transmitted within these shallow sediments.
Coverage:Geographic coordinates:
North:35.0000
West:135.0000East: 137.3000
South:32.3000

Structural geology; Oceanography; accretionary wedges; Asia; consolidation; continental margin; continental slope; crust; deformation; Expedition 314; experimental studies; Far East; fault zones; faults; Integrated Ocean Drilling Program; IODP Site C0001; IODP Site C0003; Japan; Kumano Basin; laboratory studies; lithosphere; marine geology; marine sediments; mechanical properties; megasplay faults; methods; Nankai Trough; NanTroSEIZE; North Pacific; Northwest Pacific; Pacific Ocean; plate convergence; pore pressure; sediments; stress; subduction zones; techniques; tectonophysics; testing; West Pacific;

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