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Article Dans Une Revue Journal of Structural Geology Année : 2018

Pore network properties of sandstones in a fault damage zone

Claire Bossennec
  • Fonction : Auteur
Yves Géraud
Isabelle Moretti
Luca Mattioni
  • Fonction : Auteur

Résumé

The understanding of fluid flow in faulted sandstones is based on a wide range of techniques. These depend on the multi-method determination of petrological and structural features, porous network properties and both spatial and temporal variations and interactions of these features. The question of the multi-parameter analysis on fluid flow controlling properties is addressed for an outcrop damage zone in the hanging wall of a normal fault zone on the western border of the Upper Rhine Graben, affecting the Buntsandstein Group (Early Triassic). Diagenetic processes may alter the original pore type and geometry in fractured and faulted sandstones. Therefore, these may control the ultimate porosity and permeability of the damage zone. The classical model of evolution of hydraulic properties with distance from the major fault core is nuanced here. The hydraulic behavior of the rock media is better described by a pluri-scale model including: 1) The grain scale, where the hydraulic properties are controlled by sedimentary features, the distance from the fracture, and the impact of diagenetic processes. These result in the ultimate porous network characteristics observed. 2) A larger scale, where the structural position and characteristics (density, connectivity) of the fracture corridors are strongly correlated with both geo-mechanical and hydraulic properties within the damage zone.
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Dates et versions

hal-02457292 , version 1 (24-06-2020)

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Paternité - Pas d'utilisation commerciale - Pas de modification

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Claire Bossennec, Yves Géraud, Isabelle Moretti, Luca Mattioni, Didier Stemmelen. Pore network properties of sandstones in a fault damage zone. Journal of Structural Geology, 2018, 110, pp.24-44. ⟨10.1016/j.jsg.2018.02.003⟩. ⟨hal-02457292⟩
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