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Spatial variation of microstructure and petrophysical properties along deformation hands in reservoir sandstones

机译:储集层砂岩变形手的微观结构和岩石物性空间变化

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A series of deformation bands from various reservoir sandstones deformed at different burial depths have been studied with respect to microstructural and petrophysical variations. In many of the examples explored, the internal microstructure, porosity, and permeability vary along the bands at the centimeter or even millimeter scale, changing and in most cases reducing the ability of the bands to act as barriers to fluid flow. Porosity varies by up to 18% and permeability by up to two orders of magnitude. Such petrophysical variations are found along different types of deformation bands, but the range depends upon the deformation mechanisms, in particular on the degree of cataclasis and dissolution in cataclastic and dissolution bands, and on the phyllosilicate content in disaggregation bands. For cataclastic bands, the grain-size distribution changes along the bands with regard to the degree of cataclasis. Furthermore, the increased specific surface area of the pore-grain interface as a result of cataclasis causes higher permeability reduction in cataclastic bands than in other types of deformation bands. Phyllosilicate content can influence the thickness of phyllosilicate bands. However, no apparent correlation between thickness and intensity of cataclasis in the studied cataclastic deformation bands is observed.
机译:关于微观结构和岩石物理变化,已经研究了在不同埋藏深度变形的各种储层砂岩的一系列变形带。在探索的许多示例中,内部微结构,孔隙率和渗透率都沿着带在厘米甚至毫米尺度上变化,从而发生变化,并且在大多数情况下,减小了带充当流体流动屏障的能力。孔隙率变化最多18%,渗透率变化最多两个数量级。沿不同类型的形变带发现了这种岩石物理变化,但是范围取决于形变机理,特别是取决于分解和分解带中的分解和溶解程度,以及分解带中的页硅酸盐含量。对于碎裂带,晶粒尺寸分布沿着带的分解程度而变化。此外,由于催化作用,增加了孔-晶界面的比表面积,从而使碎裂带中的渗透率降低幅度高于其他类型的形变带。硅酸盐的含量会影响硅酸盐带的厚度。然而,在所研究的裂变形变带中,没有观察到其厚度与强度的明显相关性。

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