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Shear-enhanced compaction bands formed at shallow burial conditions; implications for fluid flow (Provence, France)

机译:在浅埋下形成剪切增强的压实带;对流体流动的影响(法国普罗旺斯)

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摘要

Field observations of highly porous and permeable sandstone in the Orange area (S-E Basin, France) show that networks of shear-enhanced compaction bands can form in a contractional regime at burial depths of about 400 m ± 100 m. These bands show equal compaction and shear displacements, are organized in conjugate and densely distributed networks, and are restricted to the coarse-grained (mean grain diameter of 0.6 ± 0.1 mm) and less porous (porosity of 26 ± 2%) sand layers. The bands are crush microbreccia with limited grain comminution and high grain microfracture density. They show reductions of permeability (mD) ranging from 0 to little more than 1 order of magnitude. They show no control on the alteration products related to meteoric water flow, which suggests that these shear-enhanced compaction bands have no or only negligible influence on subsurface fluid flow. Their selective occurrence and small (20%) reduction in transmissibility in densely populated layers prevented them from compartmentalizing the sandstone reservoirs. A comparison with compaction-band populations in the Navajo and Aztec sandtsones (western U.S.) emphasizes the role of burial depth and the presence of chemical compaction processes for the sealing potential of deformation bands.
机译:在奥兰治地区(法国S-E盆地)对高孔隙度和高渗透性砂岩的现场观察表明,在埋深约400 m±100 m的收缩状态下,剪切增强的压实带网络可以形成。这些带表现出相同的压实度和剪切位移,以共轭和密集分布的网络组织,并且仅限于粗粒(平均粒径为0.6±0.1 mm)和较少孔隙(孔隙度为26±2%)的砂层。带是破碎的角砾岩,具有有限的颗粒破碎和高的颗粒微断裂密度。它们显示渗透率(mD)的降低范围从0到略大于1个数量级。他们没有控制与流水有关的蚀变产物,这表明这些剪切增强的压实带对地下流体的流动没有影响或影响很小。在人口稠密的层中,它们的选择性发生和透射率的小幅下降(20%)阻止了它们将砂岩储层分隔开。与纳瓦霍(Navajo)和阿兹台克人(Aztec)Sandtsones(美国西部)的压实带种群进行比较,强调了埋藏深度的作用以及化学压实过程对形变带封闭的潜在作用。

著录项

  • 来源
    《Journal of structural geology》 |2013年第2期|3-15|共13页
  • 作者单位

    U.M.R. CN.R.S. 5243 Geosciences Montpellier, University of Montpellier 11, U.F.R. Sciences et Techniques, Place Eugene Bataillon, 34095 Montpellier cedex 5, France;

    U.M.R. CN.R.S. 5243 Geosciences Montpellier, University of Montpellier 11, U.F.R. Sciences et Techniques, Place Eugene Bataillon, 34095 Montpellier cedex 5, France;

    U.M.R. C.N.R.S. 6249 Chrono-Environnement, Departement Ceosciences, U.F.R. Sciences et Techniques, University of Franche-Comte, 16 route de Cray, 25030 Besancon cedex, France;

    Centre for Integrated Petroleum Research (CIPR), Uni Research, Allegaten 41, N-5007 Bergen, Norway,Department of Earth Science, University of Bergen, Allegaten 41, N-5007 Bergen, Norway,Museum of Natural History, University of Bergen, Allegaten 41, Postboks 7800, N-5020 Bergen, Norway;

    AREVA JVC, BU Mines Direction Ceosdences, 92084 ha Defense, Paris, France;

    Centre for Integrated Petroleum Research (CIPR), Uni Research, Allegaten 41, N-5007 Bergen, Norway,Department of Earth Science, University of Bergen, Allegaten 41, N-5007 Bergen, Norway,Norwegian Ceotechnical Institute (NCI), Sognsveien 72, N-0855 Oslo, Norway;

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

    compaction band; deformation band; porous sandstone; permeability; fluid flow; shallow burial conditions;

    机译:压实带变形带多孔砂岩渗透性流体流量浅埋条件;

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