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Evolution of poroelastic properties and permeability in damaged sandstone

机译:破损砂岩孔隙弹性和渗透率的演化

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摘要

This paper is devoted to experimental investigation of mechanical behavior, poroelastic properties and permeability in saturated sandstone. The emphasis is to study the evolution of Biot’s coefficients and permeability with the growth of microcracks. Basic mechanical responses are first investigated through triaxial compression tests, showing nonlinear stress–strain relations, volumetric dilatancy, pressure sensitivity, elastic modulus degradation and induced anisotropy. Original tests are then performed for the determination of Biot’s coefficients in the axial and radial directions at different levels of stress. It is shown that the evolution of Biot’s coefficient is clearly anisotropic in nature due to the oriented closure of initial microcracks and growth of induced microcracks. The rock permeability in axial direction is also measured for different values of stress; it decreases in the first stage with the closure of microcracks and then progressively increases due to the opening of induced microcracks. However, the permeability significantly increases only when the coalescence of microcracks occurs.
机译:本文致力于饱和砂岩力学行为,孔隙弹性和渗透率的实验研究。重点是研究随着微裂纹的增长,毕奥系数和渗透率的变化。首先通过三轴压缩试验研究了基本的机械响应,显示出非线性应力-应变关系,体积膨胀率,压力敏感性,弹性模量下降和诱发的各向异性。然后进行原始测试,以确定在不同应力水平下的轴向和径向Biot系数。结果表明,由于初始微裂纹的定向闭合和诱导微裂纹的生长,比奥系数的演化在本质上显然是各向异性的。还针对不同的应力值测量了轴向的岩石渗透率。它在第一阶段随着微裂纹的闭合而减小,然后由于诱导的微裂纹的打开而逐渐增大。但是,仅当发生微裂纹合并时,渗透性才显着增加。

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