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首页> 外文期刊>Geophysical Research Letters >Connecting microstructural attributes and permeability from 3D tomographic images of in situ shear-enhanced compaction bands using multiscale computations
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Connecting microstructural attributes and permeability from 3D tomographic images of in situ shear-enhanced compaction bands using multiscale computations

机译:使用多尺度计算连接原位剪切增强压实带的3D断层图像的微观结构属性和渗透率

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Tomographic images taken inside and outside a compaction band in a field specimen of Aztec sandstone are analyzed by using numerical methods such as graph theory, level sets, and hybrid lattice Boltzmann/finite element techniques. The results reveal approximately an order of magnitude permeability reduction within the compaction band. This is less than the several orders of magnitude reduction measured from hydraulic experiments on compaction bands formed in laboratory experiments and about one order of magnitude less than inferences from two-dimensional images of Aztec sandstone. Geometrical analysis concludes that the elimination of connected pore space and increased tortuosities due to the porosity decrease are the major factors contributing to the permeability reduction. In addition, the multiscale flow simulations also indicate that permeability is fairly isotropic inside and outside the compaction band.
机译:通过使用诸如图论,水平集和混合晶格玻尔兹曼/有限元技术等数值方法分析在阿兹台克人砂岩现场样品中压实带内外的断层图像。结果表明,压实带内的渗透率降低了大约一个数量级。这比在实验室实验中形成的压实带上水力实验测得的数量级减少量要少,并且比阿兹台克人砂岩的二维图像的推断量少大约一个数量级。几何分析得出的结论是,由于孔隙率降低,连通孔空间的消除和曲折度的增加是导致渗透率降低的主要因素。此外,多尺度流动模拟还表明,压实带内部和外部的渗透率是各向同性的。

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