Core Analysis Using Nuclear Magnetic Resonance

Yan Zhang, Yiqiao Song, Sihui Luo, Tingting Lin, Huabing Liu
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Abstract

Core analysis is critical for oil and gas exploration and recovery. Nuclear magnetic resonance (NMR) has been widely applied to the petroleum industry for many years, and NMR core analysis plays an important role in supporting borehole NMR formation evaluation and understanding the mechanisms of petrophysics and petrochemistry. It’s unfortunate, however, that there has been a lack of commented descriptions of the basic procedures for NMR rock core analysis in the literature, which has led to issues of comparability and repeatability of NMR measurements between different laboratories. In this paper, we present a brief guideline for NMR rock core analysis of conventional T2, T1, T1-T2, and D-T2 measurements. As an established procedure in daily laboratory work, NMR core analysis includes three sophisticated steps: rock sample preparation, an NMR experiment, and data analysis. The acquisition and saturation of rock samples are described, and corresponding solutions are also considered. Detailed NMR experimental measurements, data setting, and calibration are addressed. Laplace inversion for different NMR experiments and models for estimation of porosity, irreducible water, permeability, pore structure, and oil saturation are included. The aim of this paper is to try to standardize general NMR experiments for rock core analysis.
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利用核磁共振进行岩心分析
岩心分析对于油气勘探和采收至关重要。多年来,核磁共振(NMR)已被广泛应用于石油工业,核磁共振岩心分析在支持井眼核磁共振地层评价、了解岩石物理和石油化学机理方面发挥着重要作用。然而令人遗憾的是,文献中一直缺乏对核磁共振岩心分析基本程序的评论性描述,这导致了不同实验室之间核磁共振测量的可比性和可重复性问题。本文简要介绍了常规 T2、T1、T1-T2 和 D-T2 测量的核磁共振岩芯分析指南。作为实验室日常工作的既定程序,核磁共振岩心分析包括三个复杂步骤:岩样制备、核磁共振实验和数据分析。介绍了岩石样本的采集和饱和,还考虑了相应的解决方案。还讨论了详细的 NMR 实验测量、数据设置和校准。还包括不同 NMR 实验的拉普拉斯反演以及孔隙度、不可还原水、渗透率、孔隙结构和石油饱和度的估算模型。本文旨在尝试对岩心分析的一般核磁共振实验进行标准化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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