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Multiscale characterization of three-dimensional pore structures in a shale gas reservoir: A case study of the Longmaxi shale in Sichuan basin, China

机译:页岩气藏三维孔隙结构的多尺度表征 - 以中国四川盆地龙马西页岩为例

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摘要

A typical Longmaxi (LMX) shale sample from Sichuan basin, China, is investigated in three dimensional through multiscale tomography methods spanning pixel sizes from 3.25 mu m to 10 nm, combining X-ray computed tomography and focused ion beam-scanning electron microscopy imaging techniques. Pores, organic matter (OM) and pyrite were segmented and reconstructed at multiple scales and the representative elementary volume (REV) of each phase at different scales based on the convergence of error bars in the volume fraction are determined. Results show that REVs at each scale varied between different phases. The determination of REV defined the applicable scale of different methods as well as the appropriate scales of specific structures. Porosity of LMX shale determined at different scales shows significant difference at two orders of magnitude. This difference likely was caused by structural heterogeneity together with the limitations of methods. This study confirms that REV is a feasible and powerful approach in modeling shale using multiscale 3D imaging. The application of multiscale 3D imaging techniques to worldwide shale gas reservoirs could allow for significant insights into the assessment of migration mechanisms within low-permeability systems.
机译:来自中国四川盆地的典型的朗马西(LMX)页岩样品,通过多尺度断层扫描方法在三维中调查了从3.25 mu m到10 nm的像素尺寸,组合X射线计算机断层扫描和聚焦离子束扫描电子显微镜成像技术。孔,有机物(OM)和吡钛钛矿在多个尺度下进行并重建,并且确定基于体积分数中的误差杆的收敛以不同刻度的每个相的代表性基本体积(Rev)。结果表明,在不同阶段之间的每种比例的REV都变化。 Rev定义了不同方法的适用规模以及特定结构的适当尺度。在不同尺度确定的LMX页岩的孔隙率显示出两个数量级的显着差异。这种差异可能是由结构异质性引起的,以及方法的局限性。本研究证实,REV是使用多尺度3D成像建模页岩的可行和强大的方法。多尺度3D成像技术在全球页岩气藏中的应用可以允许对低渗透系统中的迁移机制评估进行重要的见解。

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