首页> 外文会议>Annual Technical Conference and Exhibition >New Rock-Typing Index Based on Hydraulic and Electric Tortuosity Data for Multi-Scale Dynamic Characterization of Complex Carbonate Reservoirs
【24h】

New Rock-Typing Index Based on Hydraulic and Electric Tortuosity Data for Multi-Scale Dynamic Characterization of Complex Carbonate Reservoirs

机译:基于液压和电动曲折数据的新型岩石键入指数,用于复合碳酸盐储层多尺度动态特征

获取原文

摘要

Rock-pore-space geometry and network topology have a great impact on dynamic reservoir characteristics, in particular on capillary pressure and relative permeability curves. Hydraulic tortuosity is a key independent measurement relating the pore-space geometry and topology to the rock’s effective porosity and absolute permeability. Therefore, hydraulic tortuosity can be an important concept for dynamic reservoir characterization and reservoir simulation. Our objectives are to recommend a new dynamic rock-typing process and to assess the corresponding improvement on reservoir simulation processes. We introduce an innovative dynamic reservoir-rock-typing (DRRT) index, using absolute permeability, porosity and hydraulic tortuosity data, derived from mercury-injection capillary pressure (MICP) experiments. For correlation purposes, we also derived electric tortuosity data from formation-resistivity experiments. We used the experimental data from the Worldwide Rock Catalog (WWRC) provided by a joint-industry project (Core Lab, 2014), for both carbonate and clastic rocks. Based on the new proposed DRRT index and on corresponding dynamic reservoir properties, we prepared a comprehensive sensitivity study on the impact of hydraulic tortuosity variability on oil recovery results. This sensitivity study was done by incorporating the concept of hydraulic tortuosity in a synthetic carbonate-reservoir simulation model. The analysis of the MICP and formation-resistivity data showed both greater average tortuosity and greater tortuosity variability for carbonates, when compared with clastic rocks. It also showed good correlation between hydraulic and electric tortuosity values. The sensitivity study results showed a significant impact of hydraulic tortuosity variability on oil in place and reserves estimates for improved oil recovery (IOR) / enhanced oil recovery (EOR) processes in typical complex carbonate reservoirs, such as the ones found in the Brazilian Pre-Salt. It also showed the importance of applying proper corrections while deriving dynamic reservoir properties from capillary pressure and relative permeability experiments. The new DRRT index shows a much stronger correlation with pore-space geometry when compared with traditional reservoir-quality (RQI) and flow-zone (FZI) indexes. Therefore, it has clear potential to enhance the dynamic rock-typing process for reservoir simulation of IOR / EOR in complex carbonate rocks. We also discuss the importance of an integrated laboratory test and well log program to enable the proper upscaling and geostatistical distribution of dynamic rock properties.
机译:岩石空间几何和网络拓扑对动态储层特性产生了很大的影响,特别是对毛细管压力和相对渗透曲线。液压曲折是一个关键的独立测量,与岩石的有效孔隙度和绝对渗透率相关联的孔隙空间几何形状和拓扑。因此,液压曲折是动态储层表征和储层模拟的重要概念。我们的目标是推荐一个新的动态摇滚打字过程,并评估水库模拟过程的相应改进。我们使用汞注射毛细压力(MICP)实验介绍了一种创新的动态储层岩石打字(DRRT)指数,采用绝对渗透率,孔隙率和液压曲折数据。对于相关目的,我们还从形成电阻率实验中衍生出电动曲折数据。我们使用了来自全球岩石目录(WWRC)的实验数据,由联合行业项目(2014年核心实验室)提供,适用于碳酸盐和碎屑岩石。基于新的拟议的DRRT指数和相应的动态储层性质,我们为液压曲折变异性对石油回收结果的影响制定了综合敏感性研究。这种敏感性研究是通过在合成碳酸盐储层模拟模型中纳入液压曲折性的概念来完成的。与碎片岩石相比,对MICP和地层电阻率数据的分析显示出更大的平均曲折,碳酸盐曲折变异性。它还表现出液压和电动曲折值之间的良好相关性。敏感性研究结果对典型复合碳酸盐储层(例如在巴西)之前的液压恢复(IOR)/增强的储存(EOR)过程中,液压曲折变异性对油的液压曲折变异性的影响显着影响。盐。它还表明,在从毛细管压力和相对渗透性实验中获得动态储层性质的同时应用适当校正的重要性。与传统的储层 - 质量(RQI)和流量区(FZI)指标相比,新的DRRT指数与孔隙空间几何形状有更强烈的相关性。因此,它具有明显的潜力,可以提高复合碳酸盐岩中IOR / EOR储层模拟的动态摇臂键入过程。我们还讨论了一体化实验室测试和井日志计划的重要性,以实现动态岩石属性的适当升高和地质统计分配。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号