利用x射线微ct对始新统Mirador组致密砂岩孔隙结构及CO2储集潜力进行了表征

IF 5.5 0 ENERGY & FUELS
Carlos A. Ríos , Carlos A. Chacón , Carlos Villarreal , Leonardo Salazar , Arash Aghaei , Rengarajan Pelapur , Arsalan Zolfaghari , Tomas Silva Santisteban
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引用次数: 0

摘要

利用数字岩石物理和x射线微计算机断层扫描(μCT)技术,对哥伦比亚NW Llanos盆地始新统Mirador组致密砂岩孔隙结构进行了全面表征。岩石学分析表明砂岩主要为石英砂质,粘土含量极低。通过扫描电镜进行定量矿物填图,进一步阐明了关键的造岩矿物及其结构和微观结构特征。岩石物性分析表明,由于次生石英胶结作用明显,孔隙度低(3.3%),抗压强度高。详细的2D和3D μCT成像提供了对孔隙结构、大小分布和连通性的深入了解,突出了影响孔隙度和渗透率的小孔隙的优势。裂缝的存在影响流体流动,而孔隙连通性对储层质量评价至关重要。该研究强调了成像分辨率在准确表征孔隙几何形状和连通性方面的重要性。使用PerGeos软件创建的3D数字岩心模型提供了孔隙结构的详细表示。这些发现增强了对始新世Mirador组孔隙结构的认识,有助于评估CO2储存潜力,并为油气勘探、资源管理和岩土工程提供有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing pore structure and CO2 storage potential in Eocene Mirador Formation tight sandstones using X-ray micro-CT
This study utilizes digital rock physics and X-ray micro-computed tomography (μCT) to comprehensively characterize the pore structure of the Eocene Mirador Formation tight sandstone from the NW Llanos Basin, Colombia. Petrographic analysis identifies the sandstone as predominantly quartz arenite with minimal clay content. Quantitative mineral mapping through scanning electron microscopy further elucidates key rock-forming minerals and their textural and microstructural characteristics. The analysis of petrophysical properties reveals low porosity (3.3 %) and high compressive strength due to significant secondary quartz cementation. Detailed 2D and 3D μCT imaging provides insights into pore structure, size distribution, and connectivity, highlighting a predominance of small pores that influence both porosity and permeability. The presence of fractures impacts fluid flow, while pore connectivity is crucial for reservoir quality assessment. The study underscores the importance of imaging resolution in accurately characterizing pore geometry and connectivity. A 3D digital core model, created with PerGeos software, offers a detailed representation of the pore structure. These insights enhance the understanding of the Eocene Mirador Formation's pore structure, contributing to CO2 storage potential assessments and providing valuable information for hydrocarbon exploration, resource management, and geotechnical engineering.
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