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在地下条件下对储层岩石中混合润湿性进行原位表征。

In situ characterization of mixed-wettability in a reservoir rock at subsurface conditions.

机构信息

Department of Earth Science and Engineering, Imperial College London, London, SW7 2AZ, United Kingdom.

出版信息

Sci Rep. 2017 Sep 7;7(1):10753. doi: 10.1038/s41598-017-10992-w.

Abstract

We used X-ray micro-tomography to image the in situ wettability, the distribution of contact angles, at the pore scale in calcite cores from a producing hydrocarbon reservoir at subsurface conditions. The contact angle was measured at hundreds of thousands of points for three samples after twenty pore volumes of brine flooding.We found a wide range of contact angles with values both above and below 90°. The hypothesized cause of wettability alteration by an adsorbed organic layer on surfaces contacted by crude oil after primary drainage was observed with Scanning Electron Microscopy (SEM) and identified using Energy Dispersive X-ray (EDX) analysis. However, not all oil-filled pores were altered towards oil-wet conditions, which suggests that water in surface roughness, or in adjacent micro-porosity, can protect the surface from a strong wettability alteration. The lowest oil recovery was observed for the most oil-wet sample, where the oil remained connected in thin sheet-like layers in the narrower regions of the pore space. The highest recovery was seen for the sample with an average contact angle close to 90°, with an intermediate recovery in a more water-wet system, where the oil was trapped in ganglia in the larger regions of the pore space.

摘要

我们使用 X 射线微断层扫描技术,在地下条件下对来自烃类油藏的方解石岩心进行原位润湿性成像,以研究孔隙尺度上的润湿性和接触角分布。在对 3 个岩心进行了 20 倍孔隙体积的盐水驱替后,我们在数十万点上测量了接触角。我们发现接触角的范围很广,有高于和低于 90°的接触角。用扫描电子显微镜(SEM)观察到了在初次驱替后与原油接触的表面上吸附的有机层导致润湿性改变的假设,并通过能谱分析(EDX)进行了识别。然而,并非所有含油孔隙都向油湿性条件改变,这表明表面粗糙度中的水或相邻的微孔可以保护表面免受强烈的润湿性改变。在最油湿的岩心样品中观察到最低的采油率,其中油在孔隙空间较窄的区域中保持薄片状层连接。对于接触角接近 90°的岩心样品,采油率最高,而在更亲水的系统中,油被困在孔隙空间较大区域的油囊中,采油率处于中间水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/216c/5589931/314257f6c4b7/41598_2017_10992_Fig1_HTML.jpg

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