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Anisotropy of permeability in faulted porous sandstones

机译:断层多孔砂岩渗透率各向异性

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摘要

Studies of fault rock permeabilities advance the understanding of fluid migration patterns around faults and contribute to predictions of fault stability. In this study a new model is proposed combining brittle deformation structures formed during faulting, with fluid flow through pores. It assesses the impact of faulting on the permeability anisotropy of porous sandstone, hypothesising that the formation of fault related micro-scale deformation structures will alter the host rock porosity organisation and create new permeability pathways. Core plugs and thin sections were sampled around a normal fault and oriented with respect to the fault plane. Anisotropy of permeability was determined in three orientations to the fault plane at ambient and confining pressures. Results show that permeabilities measured parallel to fault dip were up to 10 times higher than along fault strike permeability. Analysis of corresponding thin sections shows elongate pores oriented at a low angle to the maximum principal palaeo-stress (σ_1) and parallel to fault dip, indicating that permeability anisotropy is produced by grain scale deformation mechanisms associated with faulting. Using a soil mechanics 'void cell model' this study shows how elongate pores could be produced in faulted porous sandstone by compaction and reorganisation of grains through shearing and cataclasis.
机译:断层岩石渗透率的研究促进了对断层周围流体运移模式的理解,并有助于断层稳定性的预测。在这项研究中,提出了一个新模型,该模型结合了断层过程中形成的脆性变形结构和流体流经孔隙的能力。该研究评估了断层对多孔砂岩渗透率各向异性的影响,并假设与断层有关的微观形变结构的形成将改变宿主岩的孔隙度组织并创造新的渗透路径。围绕正常断层对岩心塞和薄片进行了采样,并相对于断层平面进行了定向。在环境压力和围压下,在断层平面的三个方向确定了渗透率的各向异性。结果表明,平行于断层倾角测得的渗透率比沿断层走向的渗透率高出十倍。对相应薄层的分析表明,细长孔隙与最大主古应力(σ_1)呈低角度取向,并且平行于断层倾角,表明渗透性各向异性是由与断层有关的晶粒尺度变形机制产生的。这项研究使用土壤力学的“空泡细胞模型”,表明如何通过剪切和催化作用将颗粒压实和重组,从而在断层多孔砂岩中产生细长的孔隙。

著录项

  • 来源
    《Journal of structural geology》 |2014年第6期|50-67|共18页
  • 作者单位

    School of Geosciences, King's College, University of Aberdeen, Aberdeen AB24 3UE, United Kingdom,Geology Department, School of Geosciences, University of Aberdeen, Meston Building, Aberdeen AB24 3UE, United Kingdom;

    School of Geosciences, King's College, University of Aberdeen, Aberdeen AB24 3UE, United Kingdom;

    School of Geosciences, King's College, University of Aberdeen, Aberdeen AB24 3UE, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Permeability; Anisotropy; Faulting; Porous sandstone; Cataclasis; Confining pressure;

    机译:渗透性各向异性断层;多孔砂岩白内障;围压;
  • 入库时间 2022-08-18 03:37:16

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