The rock typing of complex clastic formation by means of computed tomography and nuclear magnetic resonance

IF 0.8 Q3 ENGINEERING, PETROLEUM Georesursy Pub Date : 2022-12-20 DOI:10.18599/grs.2022.4.9
A. Tchistiakov, E. Shvalyuk, Alexandr A. Kalugin
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引用次数: 3

Abstract

This study provides a new rock-typing approach for low-resistive and low-permeable clastic rocks. The approach includes integrated interpretation of routine core analysis data with microstructural characteristics, acquired from computed tomography (CT) and nuclear-magnetic resonance (NMR) data. The studied formation comprises siltstones in its bottom, which are replaced by sandstones in its top. Sandstones form the main part of the oil reservoir, whereas siltstones were originally considered as water-saturated. The reserves calculation was performed based on a single Archie equation for the whole formation. Despite on apparent water saturation and low permeability of the siltstones, incidental perforation showed considerable oil inflow from them as well. In order to delineate missed productive intervals within the low-resistive siltstones, we had to develop a new rock-typing approach, acknowledging rock multimineral composition, diversity of microstructures, a wide range of porosity, permeability, and residual water saturation values. Designed laboratory program included porosity, permeability, electrical resistivity measurements, capillary, NMR and CT tests. The experiments were performed on the same core samples that enabled reliable correlation between measured parameters. The joint interpretation of flow zone indicator, calculated as a function of porosity and residual water saturation, together with the results of petrophysical and microstructural measurements allowed reliable rock-typing of the clastic formation. It will serve as a petrophysical basis for identification of the missed productive intervals. The developed laboratory program and rock-typing algorithm can be implemented in other oilfields.
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利用计算机断层扫描和核磁共振技术对复杂碎屑地层进行岩石分型
本研究为低阻低渗透碎屑岩的岩石分型提供了一种新的方法。该方法包括对从计算机断层扫描(CT)和核磁共振(NMR)数据中获得的具有微观结构特征的常规岩心分析数据进行综合解释。所研究的地层底部由粉砂岩组成,顶部由砂岩取代。砂岩是油藏的主要组成部分,而粉砂岩最初被认为是水饱和的。储量计算是基于整个地层的单一Archie方程进行的。尽管粉砂岩具有明显的水饱和度和低渗透性,但偶然的射孔也显示出大量的油从中流入。为了描绘低阻粉砂岩中遗漏的生产层段,我们必须开发一种新的岩石分型方法,承认岩石的多矿物组成、微观结构的多样性、广泛的孔隙度、渗透率和残余水饱和度。设计的实验室程序包括孔隙度、渗透率、电阻率测量、毛细管、核磁共振和CT测试。实验是在相同的岩心样本上进行的,这使得测量参数之间能够进行可靠的相关性。根据孔隙度和残余水饱和度计算的流动带指标的联合解释,以及岩石物理和微观结构测量的结果,允许对碎屑岩地层进行可靠的岩石分型。它将作为识别遗漏生产层段的岩石物理基础。所开发的实验室程序和岩石分型算法可以在其他油田实施。
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
期刊最新文献
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