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How does the water-rock interaction of marly rocks affect its mechanical properties in the Three Gorges reservoir area, China?

机译:三峡库区马里岩的水-岩相互作用如何影响其力学性能?

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摘要

Marly rock is a sensitive rock group of landslides in the Three Gorges reservoir area, China. It is composed predominantly of carbonate and clay minerals, water-rock interaction (WRI) of which could activate landslides in the reservoir area. To study the mechanism by which WRI affects the mechanical properties of marly rock, samples were collected from two boreholes (depth 301.78 and 307.14 m) and slope surface. Then, laboratory tests were designed to study the quantitative relationship between mineral contents and mechanical properties of intact rock, to analyze both change process of mineral composition and microstructure under short-term and long-term WRI. Finally, the change in mechanical properties and its effect on slope stability are suggested. This study indicates that the uniaxial compressive strength and Pois-son ratio can be estimated by linear regression equations: (1) σ_c = 8.959 × (C/Q) - 0.744 × CM + 58.516; (2) μ = 0.014 × (C/Q) - 0.001 × CM + 0.234. The chemical reactions of WRI mainly included dissolution and ion exchange. On the slope surface, dissolution mainly acts on calcite, illite, dolomite, feldspar and other minerals dissolved in water. Underground, both chemical reactions of dissolution and ion exchange easily approach equilibrium with long-term seepage. Small-size minerals and microp-ores damage the stable microstructure of marly rock. These changes of minerals and microstructure can trigger shallow slope failure and develop deep creep deformation along some crash zones in the reservoir shoreline.
机译:在中国三峡库区,马利岩是一个敏感的滑坡岩群。它主要由碳酸盐和粘土矿物组成,其中的水-岩相互作用(WRI)可以激活库区的滑坡。为了研究WRI影响灰岩力学性能的机理,从两个钻孔(深度301.78和307.14 m)和斜坡表面收集了样品。然后,设计了实验室测试来研究完整岩石中矿物含量与力学性能之间的定量关系,以分析短期和长期WRI下矿物组成和微观结构的变化过程。最后,提出了力学性能的变化及其对边坡稳定性的影响。这项研究表明,可以通过线性回归方程来估算单轴抗压强度和泊松比:(1)σ_c= 8.959×(C / Q)-0.744×CM + 58.516; (2)μ= 0.014×(C / Q)-0.001×CM + 0.234。 WRI的化学反应主要包括溶解和离子交换。在斜坡表面,溶解主要作用于方解石,伊利石,白云石,长石和其他溶解在水中的矿物。在地下,溶解和离子交换的化学反应很容易达到长期渗透的平衡。小型矿物和微量矿物质破坏了马里岩的稳定微观结构。矿物和微观结构的这些变化会触发浅层边坡破坏,并沿着储层海岸线的某些碰撞带发展出深层蠕变变形。

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  • 来源
    《Environmental earth sciences》 |2014年第8期|2797-2810|共14页
  • 作者单位

    School of Environmental Studies, China University of Geosciences, Wuhan 430074, Hubei, People's Republic of China;

    Hunan Institute of Geological Survey, Changsha 410116, Hunan, People's Republic of China;

    School of Environmental Studies, China University of Geosciences, Wuhan 430074, Hubei, People's Republic of China;

    Engineering Faculty, China University of Geosciences, Wuhan 430074, Hubei, People's Republic of China;

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

    Marly rock; Water-rock interaction; Mechanical properties; Landslide;

    机译:马利摇滚水岩相互作用;机械性能滑坡;

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