枫丹白露砂岩表征:石英过度生长及其对孔喉格架的影响

F. Saadi, K. Wolf, C. V. Kruijsdijk
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引用次数: 31

摘要

枫丹白露砂岩露头是一种简单的天然多孔介质的典型例子,因为它的矿物成分纯净(0.995石英),并且在大样本块中几乎具有恒定的粒度。它被广泛用于研究简单岩石物性之间独立于其他参数的相关性。本文对枫丹白露砂岩的性质及其特征进行了实验评价,以促进对石英过度生长及其岩石物理和电输运性质的认识。为了获得孔隙和颗粒框架,我们通过计算机断层扫描(CT)图像分析,结合立体测量和统计二维/三维重建,测量和量化颗粒和孔隙矩阵的空间属性。此外,还应用了常规的岩石物理实验室方法,并将其与空间结果联系起来。此外,我们的图形方法与已有文献进行了比较。这项工作的主要贡献是石英过度生长对孔喉框架的影响。我们的实验室实验测量提供了枫丹白露砂岩岩石物理和岩石学资料的全面信息。枫丹白露砂岩露头具有一致性和均质性。所研究的枫丹白露砂岩样品中的粘土几乎不存在,在孔隙框架中不起任何作用。这确保了我们在多孔介质中流动实验的可重复性和再现性。为研究多孔介质中油的运移过程提供了可比较的岩心流动实验。我们证明石英过度生长(即胶结)在孔喉几何中起着核心作用,并通过降低孔喉(即配位数)来影响渗透率和孔隙度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Fontainebleau Sandstone: Quartz Overgrowth and itsImpact on Pore-Throat Framework
Fontainebleau sandstone outcrop is a prime example of a simple natural porous medium because of its pure mineral composition (0.995 Quartz) and an almost constant grain size in large sample blocks. It is widely used to investigate the correlation between the simple petrophysical properties independently of other parameters. This paper shows an experimental evaluation of Fontainebleau sandstone properties and their characteristics to advance understanding on the quartz overgrowth and the petrophysical and electrical transport properties. In order to acquire the pore and grain frameworks, we measure and quantify spatial attributes of the grain and pore’s matrix by Computed Tomography (CT) image analysis, associated to stereological measurements and statistical 2D/3D reconstructions. In addition, the regular petrophysical laboratory methods are applied and connected to the spatial results. Furthermore, our graphical methods are compared to pre-existing literature. The main contribution of this work is the impact of quartz overgrowth on the pore-throat framework. Our laboratory experimental measurements provide comprehensive information in petrophysical and petrological data of Fontainebleau sandstone. We conclude that Fontainebleau sandstone outcrop displays consistent and homogenous properties. The clay in the studied samples of Fontainebleau sandstone are almost not exists and does not play any role in the pore framework. This ensures repeatability and reproducibility of our flow experiments in porous media. It provides comparable core flow experimental in our study of the oil mobilization process in the porous media. We demonstrated that the quartz overgrowth (i.e. cementation) is playing a central role in the porethroat geometry and impacts both permeability and porosity by reducing the pore-throats (i.e. coordination number).
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