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利用三维磁共振成像对碳酸盐岩中多相驱替过程进行原位化学选择性监测。

In Situ Chemically-Selective Monitoring of Multiphase Displacement Processes in a Carbonate Rock Using 3D Magnetic Resonance Imaging.

作者信息

Ramskill N P, Sederman A J, Mantle M D, Appel M, de Jong H, Gladden L F

机构信息

1Department of Chemical Engineering and Biotechnology, University of Cambridge, West Cambridge Site, Philippa Fawcett Drive, Cambridge, CB3 0AS UK.

Shell Technology Centre, 3333 Highway 6 S, Houston, TX USA.

出版信息

Transp Porous Media. 2018;121(1):15-35. doi: 10.1007/s11242-017-0945-6. Epub 2017 Nov 13.

Abstract

Accurate monitoring of multiphase displacement processes is essential for the development, validation and benchmarking of numerical models used for reservoir simulation and for asset characterization. Here we demonstrate the first application of a chemically-selective 3D magnetic resonance imaging (MRI) technique which provides high-temporal resolution, quantitative, spatially resolved information of oil and water saturations during a dynamic imbibition core flood experiment in an Estaillades carbonate rock. Firstly, the relative saturations of dodecane ( and water ( , as determined from the MRI measurements, have been benchmarked against those obtained from nuclear magnetic resonance (NMR) spectroscopy and volumetric analysis of the core flood effluent. Excellent agreement between both the NMR and MRI determinations of and was obtained. These values were in agreement to 4 and 9% of the values determined by volumetric analysis, with absolute errors in the measurement of saturation determined by NMR and MRI being 0.04 or less over the range of relative saturations investigated. The chemically-selective 3D MRI method was subsequently applied to monitor the displacement of dodecane in the core plug sample by water under continuous flow conditions at an interstitial velocity of ( . During the core flood, independent images of water and oil distributions within the rock core plug at a spatial resolution of were acquired on a timescale of 16 min per image. Using this technique the spatial and temporal dynamics of the displacement process have been monitored. This MRI technique will provide insights to structure-transport relationships associated with multiphase displacement processes in complex porous materials, such as those encountered in petrophysics research.

摘要

准确监测多相驱替过程对于油藏模拟和资产表征中使用的数值模型的开发、验证和基准测试至关重要。在此,我们展示了一种化学选择性三维磁共振成像(MRI)技术的首次应用,该技术在埃斯塔亚德碳酸盐岩的动态自吸岩心驱替实验中,提供了油和水饱和度的高时间分辨率、定量、空间分辨信息。首先,将通过MRI测量确定的十二烷( )和水( )的相对饱和度与通过核磁共振(NMR)光谱和岩心驱替流出物的体积分析获得的饱和度进行了基准对比。在 和 的NMR和MRI测定之间获得了极好的一致性。这些值与通过体积分析确定的值的偏差在4%和9%以内,在研究的相对饱和度范围内,由NMR和MRI测定的饱和度测量的绝对误差为0.04或更小。随后应用化学选择性三维MRI方法来监测在连续流动条件下,以 ( )的孔隙流速,水在岩心柱塞样品中对十二烷的驱替过程。在岩心驱替过程中,以 的空间分辨率,在每幅图像16分钟的时间尺度上获取岩心柱塞内水和油分布的独立图像。利用该技术监测了驱替过程的空间和时间动态。这种MRI技术将为与复杂多孔材料中的多相驱替过程相关的结构 - 传输关系提供见解,例如在岩石物理学研究中遇到的那些材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa65/6954023/0f3ec0f3b853/11242_2017_945_Fig1_HTML.jpg

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