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Erschienen in: Rock Mechanics and Rock Engineering 12/2018

11.07.2018 | Original Paper

Stress and Pore Pressure in Mudrocks Bounding Salt Systems

verfasst von: Maria A. Nikolinakou, Peter B. Flemings, Mahdi Heidari, Michael R. Hudec

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 12/2018

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Abstract

We simulate the evolution of stress and pore pressure in sediments bounding salt systems. Our evolutionary geomechanical models couple deformation with sedimentation and porous fluid flow. We find that high differential stresses develop near rising diapirs and below salt. Salt emplacement induces significant excess pressures that are comparable to the weight of the salt sheet. In addition, we show that the shear-induced component of the excess pressures is significant. We also find that low effective stresses result in low strength, which enables salt growth. We model salt as a solid viscoplastic and sediments as poro-elastoplastic materials, and calibrate the consolidation properties based on experimental testing on smectite-rich mudrocks typical of those in the Gulf of Mexico. Our approach can be applied to design stable well bores and provide insight into macroscale geological processes. Overall, we show that transient evolutionary models can provide estimates of stress and pore pressure in many geologic systems where large strains, pore fluids, and sedimentation interact. We close with a discussion of the need to better understand material behavior at geologic stress and timescales.

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Metadaten
Titel
Stress and Pore Pressure in Mudrocks Bounding Salt Systems
verfasst von
Maria A. Nikolinakou
Peter B. Flemings
Mahdi Heidari
Michael R. Hudec
Publikationsdatum
11.07.2018
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 12/2018
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-018-1540-z

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