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The importance of the degree of cataclasis in shear bands for fluid flow in porous sandstone, Provence, France

机译:法国普罗旺斯多孔砂岩中流体流动的剪切带中的催化作用程度的重要性

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摘要

Determination of the membrane seal capacity of deformation bands is critical for managing geologic reservoirs in porous sandstones. In this study, we have analyzed a cataclastic shear-band network developed in uncemented porous sandstone in Provence, France. Geometrical analyses of the bands show significant differences between three types of bands (single strand, multistrand, and band cluster), sorted by their number of strands, their amount of shear displacement, and their thicknesses. At the microscopic scale, the image-analysis porosities and the grain-size distributions allow definition of three different types of microstructural deformation: damage zone, protocataclastic, and cataclastic. Whereas damage zone and protocataclastic deformations are observed in each type of band, cataclastic strands are observed in clusters and, sometimes, in multistrands. Cataclastic strands are characterized by a porosity reduction of 10 to 25% and a permeability reduction of three to five orders of magnitude compared to the host rock. Field observations of iron hydroxide precipitations around the bands suggest that cataclastic strands were membrane seals to water flow under vadose condition. This study therefore highlights the importance of the degree of cataclasis in shear bands as membrane seals to subsurface fluid flows in sandstone reservoirs.
机译:确定变形带的膜密封能力对于管理多孔砂岩中的地质储层至关重要。在这项研究中,我们分析了法国普罗旺斯未胶结多孔砂岩中发育的碎裂剪切带网络。带的几何分析表明,三种类型的带(单链,多链和带簇)之间存在显着差异,按带的数量,剪切位移量和厚度分类。在微观尺度上,图像分析孔隙率和晶粒尺寸分布可以定义三种不同类型的微观结构变形:破坏区,原裂变和碎裂。在每种类型的谱带中均观察到破坏区和原裂变变形,而在群中,有时在多股中观察到了碎裂股。与基岩相比,碎裂碎屑的孔隙率降低了10%至25%,渗透率降低了3至5个数量级。在带周围氢氧化铁沉淀的野外观察表明,在渗流条件下,碎裂碎屑股是水流的膜密封。因此,这项研究强调了在剪切带中催化作用程度的重要性,因为膜密封作用是砂岩储层中地下流体的流动。

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