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Microstructure and petrophysical properties of deformation bands in high porosity carbonates

机译:高孔隙率碳酸盐岩变形带的微观结构和岩石物理性质

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Deformation bands are one of the most common stain localization structures found in deformed porous rocks. Numerous documented studies on deformation bands in siliciclastics have found that they often experience a reduction in porosity due to pore collapse and cataclasis, as well as post-deformation diagenetic alteration. However, the deformation mechanisms and post-deformation diagenetic processes that affect deformation bands in carbonates are not so well understood. To fill this knowledge gap, deformation bands were studied in porous carbonates from various locations in Europe. The study focused on assessing the deformation mechanisms occurring within deformed carbonates as well as other processes that impact the porosity and permeability of the resulting deformation bands. Varying mechanisms were identified depending on the texture and composition of a host rock, and the stress conditions during deformation. For instance, host rocks dominated by coccoliths, i.e. chalk, appear to be deformed by the collapse of macro-pores within foraminifera, reducing the overall porosity, but having negligible impact on permeability. Conversely, high porosity grainstones deform by multiple mechanisms including: mechanical disintegration of peloids and subsequent aggrading neomorphism, as well as cataclasis. Post-kinematic grain dissolution and cementation are also common in various types of deformation bands.
机译:变形带是在变形的多孔岩石中发现的最常见的污点定位结构之一。关于硅质碎屑中的变形带的大量文献研究发现,由于孔隙塌陷和崩塌以及变形后的成岩作用,它们常常会降低孔隙度。但是,影响碳酸盐岩变形带的变形机制和变形后的成岩过程还不是很清楚。为了填补这一知识空白,研究了欧洲不同地区的多孔碳酸盐岩的形变带。该研究的重点是评估发生在变形碳酸盐中的变形机制以及其他影响最终变形带孔隙度和渗透率的过程。根据基质岩石的质地和组成以及变形过程中的应力条件,确定了各种机制。例如,以椰壳石即白垩为主的宿主岩石似乎因有孔虫内大孔的塌陷而变形,从而降低了整体孔隙率,但对渗透率的影响可忽略不计。相反,高孔隙度的粒岩通过多种机制变形,包括:胶体的机械崩解和随后的新近变质,以及崩塌。运动后晶粒的溶解和胶结在各种类型的变形带中也很普遍。

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