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Mechanical compaction and strain localization in Bleurswiller sandstone

机译:Bleurswiller砂岩的机械压实和应变局部化

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We performed a systematic investigation of mechanical compaction and strain localization in Bleurswiller sandstone. Our data show that the effective pressure principle can be applied in both the brittle faulting and cataclastic flow regimes, with an effective pressure coefficient close to but somewhat less than 1. Under relatively high confinement, the samples typically fail by development of compaction bands. X-ray computed tomography (CT) was used to resolve preexisting porosity clusters, as well as the initiation and propagation of the compaction bands in deformed samples. Synthesis of the CT and microstructural data indicates that there is no casual relation between collapse of the porosity clusters in Bleurswiller sandstone and nucleation of the compaction bands. Instead, the collapsed porosity clusters may represent barriers for the propagation of compaction localization, rendering the compaction bands to propagate along relatively tortuous paths so as to avoid the porosity clusters. The diffuse and tortuous geometry of compaction bands results in permeability reduction that is significantly lower than that associated with compaction band formation in other porous sandstones. Our new data confirm that Bleurswiller sandstone stands out as the only porous sandstone associated with a compactive cap that is linear, and our CT and microstructural observation show that it is intimately related to collapse of the porosity clusters. We demonstrate that the anomalous linear caps and their slopes are in agreement with a micromechanical model based on the collapse of a spherical pore embedded in an elastic-plastic matrix that obeys the Coulomb failure criterion.
机译:我们对Bleurswiller砂岩中的机械压实和应变局部化进行了系统的研究。我们的数据表明,有效压力原理可应用于脆性断层和碎裂流态,有效压力系数接近但略小于1。在相对较高的限制下,样品通常会因压实带的发展而失效。 X射线计算机断层扫描(CT)用于解决先前存在的孔隙团簇以及变形样品中压实带的萌生和传播。 CT和微观结构数据的综合表明,Bleurswiller砂岩中孔隙团簇的崩塌与压实带成核之间没有偶然的关系。相反,塌陷的孔隙簇可能代表压实局部的传播的障碍,使压实带沿着相对曲折的路径传播,从而避免了孔隙簇。压实带的弥散和曲折的几何形状导致渗透率降低,其显着低于与其他多孔砂岩中的压实带形成相关的渗透率降低。我们的新数据证实,Bleurswiller砂岩是唯一与线性压实盖层相关的多孔砂岩,而我们的CT和微观结构观察表明,它与孔隙团簇的崩塌密切相关。我们证明,异常线性帽及其斜率与微机械模型一致,该模型基于嵌入遵守Coulomb破坏准则的弹塑性基体中球形孔的塌陷。

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