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首页> 外文期刊>Bulletin of engineering geology and the environment >An experimental investigation on the poroelastic response of a water-saturated limestone to hydrostatic compression
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An experimental investigation on the poroelastic response of a water-saturated limestone to hydrostatic compression

机译:水饱和石灰石与静压压缩散流反应的实验研究

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This contribution addresses an experimental study on the poroelastic behavior of a water-saturated limestone. Samples come from Sarvak limestone, a major hydrocarbon-producing reservoir in Iran. Three back-saturated intact specimens were subjected to hydrostatic compression with different boundary pressure conditions. A coherent workflow from testing to data interpretation was established to efficiently deal with possible sources of uncertainty and provide accurate results. Obtained results revealed that drained and undrained bulk moduli, as well as the Biot and Skempton coefficients, strongly depend on the applied Terzaghi effective stress. Conversely, calculated values for the unjacketed solid modulus Ks ' were found to be constant in the range of applied stresses. Variations of the poroelastic moduli with the effective stress were modeled and used to extract depth-dependent poroelastic properties of the studied lithotype along a well. Besides, evaluated poroelastic moduli were utilized to verify the linear theory of poroelasticity. The indirectly calculated unjacketed pore modulus Ks '' appeared to be highly variable with changes in the effective stress and possesses even negative values when the Skempton coefficient is lower than a critical value. A comparison between unjacketed bulk moduli and the bulk deformation modulus of the main mineral constituents K-s also disclosed that they are basically uncorrelated, and the assumption of ideal porous rock, K-s ''=K-s '=K-s, does not hold in general for the examined rock samples. Nevertheless, consideration of the ideality assumption in the theory of poroelasticity may result in reliable estimates for the Skempton coefficient in certain circumstances, particularly at high effective stresses.
机译:该贡献解决了水饱和石灰石的腹腔弹性行为的实验研究。样本来自伊朗的一个主要的碳氢化合物水库Sarvak Limestone。对不同的边界压力条件进行三个背饱和完整试样进行静压压缩。建立了从测试到数据解释的相干工作流程,以有效处理可能的不确定性来源,并提供准确的结果。获得的结果表明,排水和不介绍的散装模数,以及BIOT和SKEMPON系数,强烈依赖于应用的Terzaghi有效应力。相反,在施加的应力范围内发现未计算的固体模量ks的计算值是恒定的。模拟了具有有效应激的孔弹性模量的变化,并用于沿着井中提取所研究的硅基型的深度依赖性孔弹性性质。此外,利用评估的孔弹性模量来验证孔弹性的线性理论。间接计算的未粘接的孔模量ks''似乎是高度变化的,随着有效应力的变化,并且当斯普克隆系数低于临界值时具有均匀的负值。非粘接的散装模量与主要矿物成分Ks的体积变形模量之间的比较还公开了它们基本上是不相关的,并且理想多孔岩ks'= ks'= ks的假设不适用于检查岩石样品。然而,考虑到孔隙痉挛理论中的理想假设可能导致在某些情况下对斯昆仑系数的可靠估计,特别是在高有效的压力下。

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