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Exploring trends in microcrack properties of sedimentary rocks: An audit of dry and water saturated sandstone core velocity-stress measurements.

机译:探索沉积岩微裂纹特征的趋势:干燥和水饱和砂岩岩心速度 - 应力测量的审计。

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摘要

Stress dependent rock physics models are being used more routinely to link mechanical deformation and stress perturbations to changes in seismic velocities and seismic anisotropy. In this paper, we invert for the effective non-linear microstructural parameters of 69 dry and saturated sandstone core samples. We evaluate the results in terms of the model input parameters of two non-linear rock physics models: A discrete and an analytic microstructural stress-dependent formulation. The results for the analytic model suggest that the global trend of the initial crack density is lower and initial aspect ratio is larger for the saturated samples compared to the corresponding dry samples. The initial aspect ratios for both the dry and saturated samples are tightly clustered between 0.0002 and 0.001, whereas the initial crack densities show more scatter. The results for the discrete model show higher crack densities for the saturated samples when compared to the corresponding dry samples. With increasing confining stress the crack densities decreases to almost identical values for both the dry and saturated samples. A key result of this paper is that there appears to be a stress dependence of the compliance ratio BN/BT within many of the samples, possibly related to changing microcrack geometry with increasing confining stress. Furthermore, although the compliance ratio BN/BT for dry samples shows a diffuse distribution between 0.4 and 2.0, for saturated samples the distribution is very tightly clustered around 0.5. As confining stresses increase the compliance ratio distributions for the dry and saturated samples become more diffuse but still noticeably different. This result is significant because it reaffirms previous observations that the compliance ratio can be used as an indicator of fluid content within cracks and fractures. From a practical perspective, an overarching purpose of this paper is to investigate the range of input parameters of the microstructural models under both dry and saturated conditions to improve prediction of stress dependent seismic velocity and anisotropy observed in time-lapse seismic data due to hydro-mechanical effects related to fluid production and injection.
机译:越来越多地使用与应力相关的岩石物理模型来将机械变形和应力扰动与地震速度和地震各向异性的变化联系起来。在本文中,我们对69个干燥和饱和砂岩岩心样品的有效非线性微观结构参数进行了反演。我们根据两个非线性岩石物理模型的模型输入参数来评估结果:离散和解析微结构应力相关公式。分析模型的结果表明,与相应的干燥样品相比,饱和样品的初始裂纹密度的总体趋势较低,而初始纵横比较大。干样品和饱和样品的初始纵横比都紧密地集中在0.0002和0.001之间,而初始裂纹密度显示出更大的分散性。离散模型的结果显示,与相应的干燥样品相比,饱和样品的裂纹密度更高。随着限制应力的增加,干样品和饱和样品的裂纹密度降低到几乎相同的值。本文的关键结果是,在许多样品中,顺应性比BN / BT似乎与应力有关,这可能与随限制应力的增加而改变微裂纹几何形状有关。此外,尽管干燥样品的顺应性比BN / BT显示为0.4到2.0之间的分散分布,但对于饱和样品,其分布非常紧密地聚集在0.5附近。随着限制应力的增加,干燥和饱和样品的顺应性比分布变得更加分散,但仍然明显不同。该结果很重要,因为它重申了以前的观察结果,即柔度比可以用作裂缝和裂缝中流体含量的指标。从实践的角度来看,本文的主要目的是研究在干燥和饱和条件下的微观结构模型输入参数的范围,以改善对时滞地震数据中水动力引起的应力相关地震速度和各向异性的预测。与流体生产和注入有关的机械效应。

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