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Evolution of damage zone geometry and intensity in porous sandstone: insight gained from strain energy density

机译:多孔砂岩破坏区几何形状和强度的演变:从应变能密度中获得的见解

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In porous geological materials such as sandstone or limestone, fault-related damage zones form arrays of deformation bands, which are planar discontinuities characterized by localized shear and porosity change. We show that the geometry and intensity of fault-related deformation band damage zones is systematic and predictable using standard strain energy density-based criteria. These criteria are used to successfully predict the tendencies for the nucleation and for the propagation of deformation bands as observed in a classic outcrop of fault-related damage zones within the brittly deformed Jurassic Wingate Sandstone exposed in the Laramide-aged Uncompahgre fold, in western Colorado, USA. The separate distributions of volumetric and distortional strain energy density are calculated for the interpreted geometry and stress state of the causative Laramide-aged thrust fault displacements from boundary element calculations of the attendant slip-induced local stresses. Volumetric strain energy density predicts the tendency for deformation band nucleation, the growth stage at which the deformation bands are defined by pore space dilatancy or collapse. Deformation band propagation, where shear occurs along the band, is predicted by distortional strain energy density. Further deformation bands at the Uncompahgre are predicted and observed to be characterized by shear-enhanced dilation.
机译:在诸如砂岩或石灰岩的多孔地质材料中,与断层有关的破坏区域形成变形带阵列,这些变形带是以局部剪切为特征的平面不连续性。和孔隙率变化。我们表明,与断层有关的变形带破坏区的几何形状和强度 是系统性的 ,并且可以使用基于标准应变能密度的标准进行预测。 这些使用标准来成功预测成核趋势和在与断层有关的损伤带的经典露头中观察到的形变带传播趋势。sup> >在美国西部科罗拉多州拉拉米德(Laramide)时代的Uncompahgre褶皱中暴露于 的脆变的侏罗纪温盖特砂岩中。计算了解释的几何形状 的体积和变形应变能密度的单独分布,以及引起拉曼酰胺老化的推力断层 位移的应力状态。伴随的 滑移引起的局部应力的边界元计算。体积应变能密度 预测变形带成核的趋势,即变形带由孔隙空间 扩张或塌陷定义的生长 阶段。沿应变带发生剪切 的变形带传播是通过应变应变能 密度来预测的。可以预测 在Uncompahgre的进一步变形带,并观察到其特征在于剪切增强的扩张。

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