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Modeling and simulation of transition zones in tight carbonate reservoirs by incorporation of improved rock typing and hysteresis models

机译:结合改进的岩石分型和滞后模型对致密碳酸盐岩储层过渡带进行建模和模拟

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Transition zones in tight heterogeneous carbonate reservoirs contain a considerable amount of original oil in place. Identifying and characterizing the petrophysical flow units of the transition zone is crucial for reserve estimation and performance prediction. This paper presents a petrophysical rock typing method based on decoding pore-size distributions from mercury injection capillary pressure (MICP) data by using Thomeer hyperboles, with proven application in a tight carbonate reservoir in the Middle East region. In this study, 150 MICP data sets were used which were type curve matched using Thomeer Hyperbolas with closure correction. Multivariate clustering method has been employed to divide the samples into a number of groups for the purpose of both representing the reservoir heterogeneity and simplifying rock typing for dynamic modeling. From the MICP curves, it has been found that mainly monomodal pore systems prevail in the targeted transition zone and five different rock types are identified. It has been observed that most of the pore throat types are meso and micro types with the negligible existence of nano-pore type. The intrinsic advantage of this rock typing method is to describe the pore system quantitatively, which is different from other rock typing methods based on the apparent poro-perm relationship. The comparison of the grouped data with the petrophysical properties showed that different pore-size distributions yield similar porosity and permeability values, reinforcing the importance of grouping rocks based on pore systems instead of their resulting properties. Additionally, a study has also been conducted to improve understanding on the relative permeability in transition zone by implementing an up-to-date model for the mix-wet condition. The work in this paper provides a guide for the further understanding of rock typing and modeling of transition zones in carbonate reservoirs.
机译:致密的非均质碳酸盐岩储层中的过渡带含有大量的原始油。识别和表征过渡带的岩石物理流动单元对于储量估算和性能预测至关重要。本文提出了一种岩石物性分类方法,该方法通过使用Thomeer hyperboles根据汞注入毛细管压力(MICP)数据解码孔径分布来证明,并在中东地区的致密碳酸盐岩储层中得到了证明。在这项研究中,使用了150个MICP数据集,这些数据使用Thomeer Hyperbolas与闭合校正进行类型曲线匹配。为了表示储层非均质性和简化岩石类型以进行动态建模,已采用多元聚类方法将样本分为多个组。从MICP曲线发现,在目标过渡带中主要存在单峰孔隙系统,并鉴定出五种不同的岩石类型。已经观察到,大多数的孔喉类型是介孔和微观类型,而纳米孔类型的存在可以忽略。这种岩石分型方法的内在优势是定量地描述了孔隙系统,这与其他基于表观孔隙-烫发关系的岩石分型方法不同。将分组数据与岩石物理特性进行比较后发现,不同的孔径分布会产生相似的孔隙率和渗透率值,从而增强了根据孔隙系统对岩石进行分组而不是对所得属性进行分组的重要性。此外,还进行了一项研究,以通过对混合湿润条件实施最新模型来增进对过渡带相对渗透率的了解。本文的工作为进一步了解碳酸盐岩储层的岩石类型和过渡带建模提供了指南。

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