泡沫在裂缝性碳酸盐岩储层中的应用:模拟研究

Ahmed Zoeir, M. Chahardowli, M. Simjoo
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引用次数: 2

摘要

裂缝性碳酸盐岩储层占世界总石油资源的25%,占伊朗石油储量的90%。由于方解石和白云岩矿物具有油湿性,因此油气重力泄放(GOGD)是影响最大的生产机理。裂缝介质注气过程中最重要的问题是窜流问题,这使得注气过程的效率极低。作为一种解决方案,使用泡沫来改变流动性比,提高体积扫描效率,并克服指指问题。在这项工作中,我们考察了影响基质采油的三种主要机制,即泡沫/油重力泄油、裂缝中泡沫流动引起的粘性压降以及发泡剂从裂缝扩散到基质中。使用CMG STARS 2015对单矩阵单元模型和一些垂直截面模型进行了泡沫注入模拟。对泡沫强度、注入速率、裂缝和基质特性、基质高度以及基质内的初始含油饱和度进行了一系列敏感性分析。结果表明:发泡剂的传质和粘性压降对泡沫的影响较大,特别是在基质平均高度较小时;此外,粘性压降机制保持不变,继续有助于从基质中提取石油,而其他两种机制随着时间的推移而减弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Foam Application in Fractured Carbonate Reservoirs: A Simulation Study
Fractured carbonate reservoirs account for 25% of world’s total oil resources and for 90% of Iranian oil reserves. Since calcite and dolomite minerals are oil wet, gas oil gravity drainage (GOGD) is known as the most influencing production mechanism. The most important issue within gas injection into fractured media is the channeling problem which makes the efficiency of gas injection process extremely low. As a solution, foam is used to change the mobility ratio, to increase volumetric sweep efficiency, and to overcome the fingering problem. In this work, we inspected three main influencing mechanisms that affect oil extraction from matrix, namely foam/oil gravity drainage, viscous pressure drop  due to foam flow in fractures, and foaming agent diffusion from fractures into the matrixes. Foam injection simulations were performed using CMG STARS 2015, on a single matrix unit model and on some vertical cross section models. A number of sensitivity analyses were performed on foam strength, injection rate, fracture and matrix properties, matrix heights, and the initial oil saturation within matrixes. The results show that the roles of the mass transfer of the foaming agent and viscous pressure drop  are significant, especially when matrix average heights are small. Moreover, the mechanism for viscous pressure drop  remains unchanged, which continues to aid oil extraction from matrixes while the other two mechanisms weaken with time.
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